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NSR database version of April 25, 2024.

Search: Author = M.Finger

Found 92 matches.

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2009SH18      Eur.Phys.J. A 39, 267 (2009)

V.I.Sharov, A.A.Morozov, R.A.Shindin, V.G.Antonenko, S.B.Borzakov, Yu.T.Borzunov, E.V.Chernykh, V.F.Chumakov, S.A.Dolgii, M.Finger, L.B.Golovanov, D.K.Guriev, A.Janata, A.D.Kirillov, A.D.Kovalenko, V.A.Krasnov, N.A.Kuzmin, A.K.Kurilkin, P.K.Kurilkin, A.N.Livanov, V.M.Lutsenko, P.K.Maniakov, E.A.Matyushevsky, G.P.Nikolaevsky, A.A.Nomofilov, Tz.Panteleev, S.M.Piyadin, I.L.Pisarev, Yu.P.Polunin, A.N.Prokofiev, V.Yu.Prytkov, P.A.Rukoyatkin, M.Slunecka, V.Sluneckova, A.Yu.Starikov, L.N.Strunov, T.A.Vasiliev, E.I.Vorobiev, I.P.Yudin, I.V.Zaitsev, A.A.Zhdanov, V.N.Zhmyrov

Measurements of the Rdp of the quasi-elastic nd → p(nn) to the elastic np → pn charge-exchange process yields at zero proton emission angle over the 0.55-2.0 GeV neutron beam energy region

NUCLEAR REACTIONS 1,2H(n, p), E=0.55-2.00 GeV; measured σ(θ) ratio. Comparison with other data and energy-dependent phase-shift analysis results.

doi: 10.1140/epja/i2008-10719-x
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset41530.


2009SH22      Phys.Atomic Nuclei 72, 1007 (2009)

V.I.Sharov, A.A.Morozov, R.A.Shindin, V.G.Antonenko, S.B.Borzakov, Yu.T.Borzunov, E.V.Chernykh, V.F.Chumakov, S.A.Dolgii, M.Finger, M.Finger, L.B.Golovanov, D.K.Guriev, A.Janata, A.D.Kirillov, A.D.Kovalenko, V.A.Krasnov, N.A.Kuzmin, A.K.Kurilkin, P.K.Kurilkin, A.N.Livanov, V.M.Lutsenko, P.K.Maniakov, E.A.Matyushevsky, G.P.Nikolaevsky, A.A.Nomofilov, Tz.Panteleev, S.M.Piyadin, I.L.Pisarev, Yu.P.Polunin, A.N.Prokofiev, V.Yu.Prytkov, P.A.Rukoyatkin, M.Slunecka, V.Sluneckova, A.Yu.Starikov, L.N.Strunov, T.A.Vasiliev, E.I.Vorobiev, I.P.Yudin, I.V.Zaitsev, A.A.Zhdanov, V.N.Zhmyrov

The ratio Rdp of the quasielastic nd → p(nn) to the elastic np → pn charge-exchange-process yields at the proton emitting angle Θp, lab = 0 degrees over 0.55-2.0 GeV neutron beam energy region. Experimental results

doi: 10.1134/S1063778809060131
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset41530.


2008FI04      Physics of Part.and Nuclei 39, 348 (2008)

M.Finger

Spin observables in np elastic scattering in the energy range 200-600 MeV. Complete experiment

NUCLEAR REACTIONS 1H(polarized n, n), E=200-590 MeV; analyzed, compiled many spin observables, including analyzing power and two-spin correlation/transfer/depolarization and three-spin parameters. Polarized and unpolarized target.

doi: 10.1134/S1063779608030027
Citations: PlumX Metrics


2005NO02      Nucl.Phys. B(Proc.Supp.) S138, 221 (2005)

M.Nomachi, P.Doe, H.Ejiri, S.R.Elliott, J.Engel, M.Finger, J.A.Formaggio, K.Fushimi, V.Gehman, A.Gorin, M.Greenfield, R.Hazama, K.Ichihara, Y.Ikegami, H.Ishii, T.Itahashi, P.Kavitov, V.Kekelidze, K.Kuroda, V.Kutsalo, I.Manouilov, K.Matsuoka, H.Nakamura, T.Ogama, A.Para, K.Rielage, A.Rjazantsev, R.G.H.Robertson, Y.Shichijo, T.Shima, Y.Shimada, G.Shirkov, A.Sissakian, Y.Sugaya, A.Titov, V.Vatulin, O.E.Vilches, V.Voronov, J.F.Wilkerson, D.I.Will, S.Yoshida

MOON (Mo Observatory Of Neutrinos) for double beta decay

doi: 10.1016/j.nuclphysbps.2004.11.053
Citations: PlumX Metrics


2005SH55      Yad.Fiz. 68, 1858 (2005); Phys.Atomic Nuclei 68, 1796 (2005)

V.I.Sharov, N.G.Anischenko, V.G.Antonenko, S.A.Averichev, L.S.Azhgirey, V.D.Bartenev, N.A.Bazhanov, A.A.Belyaev, N.A.Blinov, N.S.Borisov, S.B.Borzakov, Yu.T.Borzunov, Yu.P.Bushuev, L.P.Chernenko, E.V.Chernykh, V.F.Chumakov, S.A.Dolgii, A.N.Fedorov, V.V.Fimushkin, M.Finger, M.Finger, Jr., L.B.Golovanov, G.M.Gurevich, A.Janata, A.D.Kirillov, V.G.Kolomiets, E.V.Komogorov, A.D.Kovalenko, A.I.Kovalev, V.A.Krasnov, P.Krstonoshich, E.S.Kuzmin, V.P.Ladygin, A.B.Lazarev, F.Lehar, A.de Lesquen, M.Yu.Liburg, A.N.Livanov, A.A.Lukhanin, P.K.Maniakov, V.N.Matafonov, E.A.Matyushevsky, V.D.Moroz, A.A.Morozov, A.B.Neganov, G.P.Nikolaevsky, A.A.Nomofilov, Tz.Panteleev, Yu.K.Pilipenko, I.L.Pisarev, Yu.A.Plis, Yu.P.Polunin, A.N.Prokofiev, V.Yu.Prytkov, P.A.Rukoyatkin, V.A.Schedrov, O.N.Schevelev, S.N.Shilov, R.A.Shindin, M.Slunecka, V.Sluneckova, A.Yu.Starikov, G.D.Stoletov, L.N.Strunov, A.L.Svetov, Yu.A.Usov, T.Vasiliev, V.I.Volkov, E.I.Vorobiev, I.P.Yudin, I.V.Zaitsev, A.A.Zhdanov, V.N.Zhmyrov

Measurements of the Total-Cross-Section Difference ΔσL(np) at 1.39, 1.69, 1.89, and 1.99 GeV

NUCLEAR REACTIONS 1H(polarized n, X), E=1.39, 1.69, 1.89, 1.99 GeV; measured spin-dependent total σ difference. Polarized target.

doi: 10.1134/1.2131111
Citations: PlumX Metrics


2004SH33      Eur.Phys.J. C 37, 79 (2004)

V.I.Sharov, N.G.Anischenko, V.G.Antonenko, S.A.Averichev, L.S.Azhgirey, V.D.Bartenev, N.A.Bazhanov, A.A.Belyaev, N.A.Blinov, N.S.Borisov, S.B.Borzakov, Yu.T.Borzunov, Yu.P.Bushuev, L.P.Chernenko, E.V.Chernykh, V.F.Chumakov, S.A.Dolgii, A.N.Fedorov, V.V.Fimushkin, M.Finger, M.Finger, Jr., L.B.Golovanov, G.M.Gurevich, A.Janata, A.D.Kirillov, V.G.Kolomiets, E.V.Komogorov, A.D.Kovalenko, A.I.Kovalev, V.A.Krasnov, P.Krstonoshich, E.S.Kuzmin, V.P.Ladygin, A.B.Lazarev, F.Lehar, A.de Lesquen, M.Yu.Liburg, A.N.Livanov, A.A.Lukhanin, P.K.Maniakov, V.N.Matafonov, E.A.Matyushevsky, V.D.Moroz, A.A.Morozov, A.B.Neganov, G.P.Nikolaevsky, A.A.Nomofilov, Tz.Panteleev, Yu.K.Pilipenko, I.L.Pisarev, Yu.A.Plis, Yu.P.Polunin, A.N.Prokofiev, V.Yu.Prytkov, P.A.Rukoyatkin, V.A.Schedrov, O.N.Schevelev, S.N.Shilov, R.A.Shindin, M.Slunecka, V.Sluneckova, A.Yu.Starikov, G.D.Stoletov, L.N.Strunov, A.L.Svetov, Yu.A.Usov, T.Vasiliev, V.I.Volkov, E.I.Vorobiev, I.P.Yudin, I.V.Zaitsev, A.A.Zhdanov, V.N.Zhmyrov

Measurement of the np total cross section difference ΔσL(np) at 1.39, 1.69, 1.89 and 1.99 GeV

NUCLEAR REACTIONS 1H(polarized n, X), E=1.39, 1.69, 1.89, 1.99 GeV; measured polarization dependent σ; deduced cross section difference. Polarized target.

doi: 10.1140/epjc/s2004-01987-9
Citations: PlumX Metrics


2003DO13      Nucl.Phys. A721, 517c (2003)

P.Doe, H.Ejiri, S.R.Elliott, J.Engel, M.Finger, K.Fushimi, V.Gehman, A.Gorine, M.Greenfield, R.Hazama, K.Ichihara, T.Itahashi, P.Kavitov, V.Kekelidze, K.Kuroda, V.Kutsalo, K.Matsuoka, I.Manouilov, M.Nomachi, A.Para, A.Rjazantsev, R.G.H.Robertson, Y.Shichijo, L.C.Stonehill, T.Shima, G.Shirkov, A.Sissakian, Y.Sugaya, A.Titov, V.Vatulin, V.Voronov, O.E.Vilches, J.F.Wilkerson, D.I.Will, S.Yoshida

Neutrino Studies in 100Mo and MOON - Mo Observatory of Neutrinos -

doi: 10.1016/S0375-9474(03)01113-8
Citations: PlumX Metrics


2002DA09      Eur.Phys.J. C 23, 43 (2002)

M.Daum, M.Finger, M.Finger, Jr., J.Franz, F.H.Heinsius, A.Janata, K.Konigsmann, H.Lacker, F.Lehar, H.Schmitt, W.Schweiger, P.Sereni, M.Slunecka

The Reaction np → ppπ- from Threshold up to 570 MeV

NUCLEAR REACTIONS 1H(n, pπ-), E=300-570 MeV; measured σ, σ(E, θ); deduced reaction mechanism features.

doi: 10.1007/s100520100852
Citations: PlumX Metrics


2002DA22      Eur.Phys.J. C 25, 55 (2002)

M.Daum, M.Finger, M.Finger, Jr., J.Franz, F.H.Heinsius, A.Janata, K.Konigsmann, H.Lacker, F.Lehar, H.Schmitt, W.Schweiger, P.Sereni, M.Slunecka

Analysing power for the reaction np → ppπ- and for np elastic scattering from 270 to 570 MeV

NUCLEAR REACTIONS 1H(polarized n, pπ-), (polarized n, n), E=270-570 MeV; measured analyzing powers vs angle, invariant mass.

doi: 10.1007/s10052-002-1002-2
Citations: PlumX Metrics


2000AR17      Eur.Phys.J. C 17, 67 (2000)

J.Arnold, B.van den Brandt, M.Daum, Ph.Demierre, M.Finger, M.Finger, Jr., J.Franz, N.Goujon-Naef, P.Hautle, R.Hess, A.Janata, J.A.Konter, H.Lacker, C.Lechanoine-Leluc, F.Lehar, S.Mango, D.Rapin, E.Rossle, P.A.Schmelzbach, H.Schmitt, P.Sereni, M.Slunecka, A.Teglia, B.Vuaridel

Measurement of Spin Observables in Neutron-Proton Elastic Scattering Part I: Correlation Parameters

NUCLEAR REACTIONS 1H(polarized n, n), E=260, 315, 380, 460, 535 MeV; measured analyzing powers, spin correlation parameters. Polarized target. Comparisons with model predictions.

doi: 10.1007/s100520000464
Citations: PlumX Metrics


2000AR18      Eur.Phys.J. C 17, 83 (2000)

J.Arnold, B.van den Brandt, M.Daum, Ph.Demierre, M.Finger, M.FInger, Jr., J.Franz, N.Goujon-Naef, P.Hautle, R.Hess, A.Janata, J.A.Konter, H.Lacker, C.Lechanoine-Leluc, F.Lehar, S.Mango, D.Rapin, E.Rossle, P.A.Schmelzbach, H.Schmitt, P.Sereni, M.Slunecka, A.Teglia, B.Vuaridel

Measurement of Spin Observables in Neutron-Proton Elastic Scattering Part II: Rescattering Parameters

NUCLEAR REACTIONS 1H(polarized n, n), E=260, 315, 380, 460, 535 MeV; measured polarization transfer parameters, other rescattering parameters. Polarized target. Comparisons with model predictions.

doi: 10.1007/s100520000465
Citations: PlumX Metrics


2000SH19      Eur.Phys.J. C 13, 255 (2000)

V.I.Sharov, S.A.Zaporozhets, B.P.Adiasevich, N.G.Anischenko, V.G.Antonenko, L.S.Azhgirey, V.D.Bartenev, N.A.Bazhanov, N.A.Blinov, N.S.Borisov, S.B.Borzakov, Yu.T.Borzunov, L.V.Budkin, V.F.Burinov, Yu.P.Bushuev, L.P.Chernenko, E.V.Chernykh, S.A.Dolgii, V.M.Drobin, G.Durand, A.P.Dzyubak, A.N.Fedorov, V.V.Fimushkin, M.Finger, M.Finger, Jr., L.B.Golovanov, G.M.Gurevich, A.Janata, A.V.Karpunin, B.A.Khachaturov, A.D.Kirillov, A.D.Kovalenko, A.I.Kovalev, V.G.Kolomiets, A.A.Kochetkov, E.S.Kuzmin, V.P.Ladygin, A.B.Lazarev, F.Lehar, A.de Lesquen, A.A.Lukhanin, P.K.Maniakov, V.N.Matafonov, A.B.Neganov, M.S.Nikitina, G.P.Nikolaevsky, A.A.Nomofilov, Tz.Panteleev, Yu.K.Pilipenko, I.L.Pisarev, N.M.Piskunov, Yu.A.Plis, Yu.P.Polunin, A.N.Prokofiev, P.A.Rukoyatkin, O.N.Shchevelev, V.A.Shchedrov, S.N.Shilov, Yu.A.Shishov, V.B.Shutov, M.Slunecka, V.Sluneckova, A.Yu.Starikov, G.D.Stoletov, L.N.Strunov, A.L.Svetov, A.P.Tsvinev, Yu.A.Usov, V.I.Volkov, V.P.Yershov, A.A.Zhdanov, V.N.Zhmyrov

Measurements of the np Total Cross Section Difference ΔσL at 1.59, 1.79 and 2.20 GeV

NUCLEAR REACTIONS 1H(polarized n, n'), E=1.59, 1.79, 2.20 GeV; measured spin-dependent total cross section difference. Polarized target, polarized neutron beam from deuteron breakup. Comparison with model predictions.

doi: 10.1007/s100520000321
Citations: PlumX Metrics


1998AH07      Eur.Phys.J. C 2, 627 (1998)

A.Ahmidouch, J.Arnold, B.van den Brandt, M.Daum, Ph.Demierre, R.Drevenak, M.Finger, M.Finger, Jr., J.Franz, N.Goujon-Naef, P.Hautle, R.Hess, A.Janata, J.A.Konter, H.Lacker, C.Lechanoine-Leluc, F.Lehar, S.Mango, C.Mascarini, D.Rapin, E.Rossle, P.A.Schmelzbach, H.Schmitt, P.Sereni, M.Slunecka, A.Teglia, B.Vuaridel

Spin Observables in Neutron-Proton Elastic Scattering

NUCLEAR REACTIONS 1H(polarized n, n), E=260, 318, 386, 472, 538 MeV; measured analyzing power, polarization transfer observables vs angle.

doi: 10.1007/s100529800880
Citations: PlumX Metrics


1998AR16      Eur.Phys.J. A 2, 411 (1998)

J.Arnold, B.van den Brandt, M.Daum, M.Finger, M.Finger, Jr., J.Franz, N.Goujon-Naef, P.Hautle, R.Hess, A.Janata, J.A.Konter, H.Lacker, C.Lechanoine-Leluc, F.Lehar, S.Mango, D.Rapin, E.Rossle, R.Schirmaier, P.A.Schmelzbach, M.Schmidt, H.Schmitt, P.Sereni, M.Slunecka, A.Teglia, B.Vuaridel

Kinetic Energy Spectrum and Polarization of Neutrons from the Reaction 12C(p(pol), n(pol))X at 590 MeV

NUCLEAR REACTIONS 12C(polarized p, nX), E=590 MeV; measured neutron spectra, polarization; deduced polarization transfer parameter.

doi: 10.1007/s100500050138
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0502.


1998KR07      Yad.Fiz. 61, No 5, 797 (1998); Phys.Atomic Nuclei 61, 717 (1998)

M.Krmar, T.L.Kracikova, M.Finger

Angular Distribution of γ Rays Emitted from the Levels Populated in the Decay of More Than One Initially Oriented States: The case of 160m+gHo

RADIOACTIVITY 160,160mHo(β+)(EC); measured Eγ, Iγ(θ). 160Dy transitions deduced δ, dependence on initial state. Oriented source.


1998KR21      Phys.Rev. C58, 1986 (1998)

T.I.Kracikova, M.Finger, M.Krmar, K.Kumar, A.Janata, N.A.Lebedev, V.N.Pavlov, E.Simeckova

Nuclear Orientation of 160Hog+mGd: Sign change of E2/M1 mixing ratios in ΔK = 2 transitions of 160Dy

RADIOACTIVITY 160Ho(β+), (EC); measured Eγ, Iγ(θ, H), anisotropies from oriented source; deduced orientation parameters, deorientation coefficients. 160Dy deduced levels, J, π, δ, quadrupole moments, magnetic moments. Dynamic deformation model calculations.

doi: 10.1103/PhysRevC.58.1986
Citations: PlumX Metrics

Data from this article have been entered in the XUNDL database. For more information, click here.


1997KR08      Nucl.Phys. A621, 639 (1997)

T.I.Kracikova, S.Davaa, M.Finger, N.A.Lebedev, V.N.Pavlov, M.Slunecka, Yu.V.Yushkevich, J.Kvasil

Nuclear Orientation Study of the Decay of 173Lu

RADIOACTIVITY 173Lu(β+), (EC) [from Ta(p, X), E=660 MeV]; measured γ(θ), oriented nuclei. 173Yb deduced levels, J, π, δ, γ-multipolarity, B(λ). Chemical, mass-separated sources, Ge(Li) detectors.

NUCLEAR STRUCTURE 173Yb; calculated levels, J, π, δ, B(λ). Quasiparticle-phonon model including Coriolis interaction.

doi: 10.1016/S0375-9474(97)00173-5
Citations: PlumX Metrics


1993ER02      Hyperfine Interactions 78, 491 (1993)

A.L.Erzinkyan, V.P.Parfenova, S.I.Reyman, G.M.Gurevich, S.V.Topalov, M.Trhlik, M.Finger, V.N.Pavlov, M.Slunecka

Mossbauer and Nuclear Orientation Study of Magnetic Atom Behaviour in AuFe Below the Percolation Threshold

NUCLEAR REACTIONS 57Fe(γ, γ), E=14.4 keV; measured Mossbauer spectra; deduced AuFe magnetic atom behavior below percolation threshold. Alloy of Au(86)Fe(14).

RADIOACTIVITY 60Co(β-); 54Mn(EC); measured γ(θ), oriented nuclei; deduced AuFe magnetic atom behavior below percolation threshold. Alloy of Au(86)Fe(14). Low temperature nuclear orientation.

doi: 10.1007/BF00568180
Citations: PlumX Metrics


1993GU13      Hyperfine Interactions 78, 497 (1993)

G.M.Gurevich, S.V.Topalov, A.L.Erzinkyan, V.P.Parfenova, M.Finger, V.N.Pavlov, J.Slovak, R.Drevenak, M.Trhlik

Local Magnetization of Co and Mn Impurities in the Reentrant Spin Glass Au(0.82)Fe(0.18)

RADIOACTIVITY 60Co(β-); 54Mn(EC); measured γ(θ), oriented nuclei; deduced Co, Mn impurities local magnetization features in reentrant spin glass Au(0.82)Fe(0.18).

doi: 10.1007/BF00568181
Citations: PlumX Metrics


1992GU19      Bull.Rus.Acad.Sci.Phys. 56, 1095 (1992)

G.M.Gurevich, A.L.Erzinkyan, V.N.Pavlov, V.P.Parfenova, S.V.Topalov, M.Trhlik, B.Sedlak, Ya.Slovak, D.L.Shishkin, M.Finger

Magnetic Properties of Co Impurity Atoms in Dilute PtFe Alloys Studied by the Method of Low Temperature Nuclear Orientation

RADIOACTIVITY 60Co(β-); measured γ-anisotropy, oriented nuclei; deduced hyperfine fields in dilute PtFe alloys.


1990ER05      Hyperfine Interactions 59, 457 (1990)

A.L.Erzinkyan, V.P.Parfenova, G.M.Gurevich, S.V.Topalov, D.L.Shishkin, M.Finger, S.Kapusta, V.N.Pavlov, J.Slovak

Nuclear Orientation Study of Low Temperature Magnetization of 54Mn Impurity in Ferromagnetic PtFe Alloys

RADIOACTIVITY 54Mn; measured γ(θ, T), oriented nuclei; deduced effective magnetic field temperature dependence. Source orientation in PtFe alloys.

doi: 10.1007/BF02401271
Citations: PlumX Metrics


1990SI11      Hyperfine Interactions 59, 181 (1990)

E.Simeckova, M.Finger, J.John, I.Novotny, V.N.Pavlov, J.Slovak

Low Temperature Nuclear Orientation of 238Np(Gd)

RADIOACTIVITY 238Np [from 237Np neutron irradiation]; measured Eγ, Iγ, γ-anisotropy. 238Pu deduced transition δ. Low temperature nuclear orientation in Gd.


1990SI12      Hyperfine Interactions 59, 185 (1990)

E.Simeckova, P.Cizek, M.Finger, J.John, P.Malinsky, V.N.Pavlov

Low Temperature Nuclear Orientation of 239Np in Gadolinium Host

RADIOACTIVITY 239Np [from 243Am α-decay]; measured γ(θ), oriented nuclei, Eγ, Iγ. 239Pu deduced transition δ, levels, J, π. Low temperature orientation in Gd.


1990SI13      Hyperfine Interactions 59, 189 (1990)

E.Simeckova, M.Finger, P.Malinsky, D.Nosek, V.N.Pavlov, T.Tethal, M.Vobecky

Nuclear Orientation Study of the Decay of 205Bi(Gd)

RADIOACTIVITY 205Bi [from Pb(d, X), E=17 MeV]; measured γ(θ), oriented nuclei, Eγ, Iγ. 205Pb deduced transition δ. Low temperature orientation, Gd host.


1990TA19      J.Phys.(London) G16, 1323 (1990)

H.Tagziria, M.Elahrash, W.D.Hamilton, M.Finger, J.John, P.Malinsky, V.N.Pavlov

The Role of the C(ρ)(L) Parameters in IBM-2 as Exemplified by the Nuclear Structure of 152Gd

RADIOACTIVITY 152Tb [from Ta(p, X), E=660 MeV]; measured γ-anisotropy. 152Gd deduced levels, J, π, γ multipolarity, δ, B(λ). Source implantation in Gd host. Interacting boson model calculations.

doi: 10.1088/0954-3899/16/9/009
Citations: PlumX Metrics


1989TR15      Hyperfine Interactions 50, 749 (1989)

M.Trhlik, B.Sedlak, V.P.Parfenova, A.L.Erzinkyan, G.M.Gurevich, S.V.Topalov, P.Malinsky, V.N.Pavlov, M.Finger

Nuclear Orientation Study of 54Mn Impurity in Pt(100-x)Fe(x)

RADIOACTIVITY 54Mn(EC); measured γ(θ, T), orienation at low temperature; deduced effective magnetic field temperature dependence.


1989TR16      Hyperfine Interactions 50, 793 (1989)

M.Trhlik, B.Sedlak, S.Kapusta, P.Cizek, M.Finger, J.Konicek, E.Kisdi-Koszo, A.Lovas, M.Vobecky, J.Kovac

Nuclear Spin-Lattice Relaxation of 192Ir in Ferromagnetic Amorphous Alloy Fe-B Studied by Nuclear Orientation

RADIOACTIVITY 192Ir(EC), (β-); measured γ(θ, T), oriented nuclei; deduced spin-lattice relaxation in ferromagnetic amorphous alloy.


1987DA11      Yad.Fiz. 45, 635 (1987)

S.Davaa, T.I.Kracikova, M.Finger, V.M.Tsupko-Sitnikov, V.N.Pavlov

Nuclear Orientation of 169Yb in Iron and Gadolinium

RADIOACTIVITY 169Yb(EC); measured Eγ, γ(θ), oriented nuclei. 169Tm deduced δ(E2/M1), δ(M2/E1). Low temperature implantation in Fe, Gd.


1987KR11      Hyperfine Interactions 34, 69 (1987)

T.I.Kracikova, S.Davaa, M.Finger

Magnetic Dipole Moments of the 147,149Gd Ground States

RADIOACTIVITY 147Gd(EC), (β+); 149Gd(EC), (α); measured γ-anisotropy, oriented nuclei. 147,149Gd level deduced μ.


1987KR12      Hyperfine Interactions 34, 127 (1987)

T.L.Kracikova, S.Davaa, M.Finger, V.N.Pavlov, V.M.Tsupko-Sitnikov

Nuclear Orientation of 154EuFe, 166TmGd and 169YbFe and 169YbGd

RADIOACTIVITY 154Eu(β-), (EC); 166Tm(β+), (EC); 169Yb(EC) [from Ta(p, X), E=660 MeV]; measured Eγ, Iγ, E(X-ray), I(X-ray), γ(θ), oriented nuclei. 169Tm, 154Gd, 166Er levels deduced δ.


1987KU16      Hyperfine Interactions 34, 339 (1987)

J.Kuriplach, L.Lestak, M.Rotter, B.Sedlak, M.Trhlik, M.Finger, T.Lesner, J.Dupak, P.Novak, M.Vobecky

160Tb Nuclear Orientation in Yttrium Single Crystal

RADIOACTIVITY 160Tb(β-); measured γ(θ), oriented nuclei; deduced external magnetic, crystal fields interaction role.

doi: 10.1007/BF02072734
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1987RO17      Hyperfine Interactions 34, 303 (1987)

M.Rotter, B.Sedlak, J.Englich, P.Cizek, M.Finger, P.Malinsky, V.N.Pavlov

56,57,60CoFe NMR/ON, Hyperfine Anomalies and γ-Factors of Cobalt Isotopes

RADIOACTIVITY 56Co(β+), (EC); 51Co(EC); 60Co(β-); measured NMR, oriented nuclei; deduced hyperfine anomalies, (γ)-anomalies in Co isotopes.

doi: 10.1007/BF02072726
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1987SI13      Hyperfine Interactions 34, 123 (1987)

P.Simecek, I.Prochazka, M.Finger, T.Lesner, P.Malinsky, I.L.Sashin, E.Simeckova, Z.Janout, J.Konicek

Decay of Oriented 149Nd and Levels in the N = 88 149Pm Nucleus

RADIOACTIVITY 149Nd(β-) [from Nd thermal neutron irradiation]; measured Eγ, Iγ, γ(θ), oriented nuclei. 149Pm deduced levels, J, B(λ), δ.


1987SI14      Hyperfine Interactions 34, 131 (1987)

P.Simecek, I.Prochazka, Chan Kim Kchung, M.Finger, M.I.Fominykh, B.A.Gvozdev, A.P.Kabachenko, T.Lesner, P.Malinsky, V.N.Pavlov, M.Vobecky

Nuclear Orientation Study of the Decay of 208At (T1/2 = 1.63 h) and 209At (T1/2 = 5.41 h) Implanted in Iron Host

RADIOACTIVITY 208At(EC), (β+), (α); 209At(EC), (α) [from 209Bi(3He, xn)]; measured Eγ, Iγ, γ(θ), oriented nuclei. 208,209Po deduced levels, J, δ.


1987TR04      Hyperfine Interactions 35, 825 (1987)

M.Trhlik, B.Sedlak, M.Rotter, L.Lestak, V.N.Pavlov, P.Cizek, M.Finger, A.L.Erzinkyan, V.P.Parfenova, G.M.Gurevich

Nuclear Spin-Lattice Relaxation of 60Co in Ferromagnetic Alloys Pt99Co1 and Pd99Co1

RADIOACTIVITY 60Co(β-); measured γ-ray anisotropy in PdCo, PtCo; deduced hyperfine field, Korringa constant. Nuclear orientation technique, thermal cycling method.


1986KR08      Czech.J.Phys. B36, 581 (1986)

T.I.Kracikova, J.Kvasil, S.Davaa, M.Finger

Coriolis Coupling and Electromagnetic Properties of Rotational Bands in Odd-A Yb Nuclei. IV. The Nucleus 173Yb

NUCLEAR STRUCTURE 173Yb; calculated levels, B(λ), δ(E2/M1), rotational band structure; deduced Coriolis coupling role.


1986RO28      Czech.J.Phys. B36, 1331 (1986)

M.Rotter, B.Sedlak, J.Englich, P.Cizek, M.Finger, P.Malinsky

Hyperfine Anomalies and Nuclear γ-Factors of 56Co, 57Co and 60Co Isotopes Studied by NMR/ON

RADIOACTIVITY 56,57Co(EC); 60Co(β-); measured NMR from oriented nuclei in iron; deduced hyperfine anomalies.

doi: 10.1007/BF01598033
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1985EN02      Hyperfine Interactions 22, 177 (1985)

J.Englich, L.Lestak, M.Rotter, B.Sedlak, M.Finger, V.N.Pavlov, V.A.Andrianov, M.G.Kozin, V.S.Shpinel

Nuclear Orientation and Spin-Lattice Relaxation in Pd-Fe-Co Alloys

RADIOACTIVITY 57Co(EC); measured γ(θ), oriented nuclei; deduced hyperfine field on 57Co in Pd-Fe-Co system.

doi: 10.1007/BF02063990
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1985FI06      Hyperfine Interactions 22, 461 (1985)

M.Finger, T.I.Kracikova, N.A.Lebedev, V.N.Pavlov, I.Prochazka, V.M.Tsupko-Sitnikov, Z.Janout, J.Konicek, M.Rotter, B.Sedlak, J.Dupak

Low Temperature Nuclear Orientation of Nuclei Far from Beta Stability Spin-Facility at JINR

NUCLEAR STRUCTURE 139mNd, 145,146,147,148,149Eu, 147,149Gd, 147,148,149,150,151,152,153,154,155,156,160Tb, 166Tm, 169Yb, 167,169,171,172,173Lu; analyzed, compiled data on γ linear polarization, γ(θ), oriented nuclei. 148,146Sm; analyzed δ. Comparison with interacting boson model.

doi: 10.1007/BF02064017
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1985KR07      Nucl.Phys. A440, 203 (1985)

T.I.Kracikova, S.Davaa, J.Kvasil, M.Finger, J.Konicek, W.D.Hamilton

Nuclear Orientation Study of the Decay of 171Lu

NUCLEAR STRUCTURE 171Yb; calculated levels, J, π, δ, B(λ). Quasiparticle-phonon model including Coriolis interaction.

RADIOACTIVITY 171Lu(EC), (β+) [from Ta(p, X), E=10 GeV]; measured Eγ, Iγ, oriented nuclei, E X-ray, I X-ray. 171Yb deduced levels, J, π, δ, γ-multipolarity, B(λ). Chemical, mass separated target, Ge(Li) detectors.

doi: 10.1016/0375-9474(85)90338-0
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1985KR19      Czech.J.Phys. B35, 1084 (1985)

T.I.Kracikova, J.Kvasil, S.Davaa, M.Finger

Coriolis Coupling and Electromagnetic Properties of Rotational Bands in Odd-A Yb Nuclei. III. The Nucleus 171Yb

NUCLEAR STRUCTURE 171Yb; calculated levels, band structure, B(λ). Semi-microscopic quasiparticle-phonon model, Coriolis interaction.


1985PA17      Hyperfine Interactions 22, 181 (1985)

J.Pavlovsky, M.Rotter, B.Sedlak, L.Lestak, M.Bartos, I.Prochazka, M.Finger

Spin Echo and Nuclear Orientation Study of Metallic Glasses

RADIOACTIVITY 60Co(β-); measured γ(θ=0°), oriented nuclei; deduced average hyperfine field. Amorphous as-quenched, heat treated Co75Fe5B20 samples.

doi: 10.1007/BF02063991
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1984KR02      J.Phys.(London) G10, 571 (1984)

T.I.Kracikova, M.Finger, V.N.Pavlov, V.A.Deryuga, P.O.Lipas, E.Hammaren, P.Toivonen

Nuclear Orientation Study of the Decay of 146Eu

RADIOACTIVITY 146Eu(EC), (β+) [from Er(p, X), E=660 MeV]; measured γ(θ), oriented nuclei; deduced orientation coefficients. 146Sm deduced levels, J, π, δ, B(λ), X(E0/E2). Interacting boson approximation model.

doi: 10.1088/0305-4616/10/4/017
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1984KR09      J.Phys.(London) G10, 667 (1984)

T.I.Kracikova, M.Finger, J.Konicek, N.A.Lebedev, V.A.Deryuga, P.O.Lipas, E.Hammaren, P.Toivonen

Nuclear Orientation Study of the Decay of 148Eu

NUCLEAR STRUCTURE 148Sm; calculated levels, δ, B(E2), X(E0/E2), quasirotational band structure. Interacting boson model.

RADIOACTIVITY 148Eu(EC), (β+), (α) [from Er(p, X), E=660 MeV]; measured γ(θ), oriented nuclei. 148Sm deduced levels, J, π, δ, X(E0/E2). Interacting boson model.

doi: 10.1088/0305-4616/10/5/010
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1984KR14      J.Phys.(London) G10, 1115 (1984)

T.I.Kracikova, S.Davaa, M.Finger, M.I.Fominykh, W.D.Hamilton, P.O.Lipas, E.Hammaren, P.Toivonen

Nuclear Orientation Study of the Decay of 172Lu

RADIOACTIVITY 172Lu(EC) [from Ta(p, X)172Hf(EC-decay)]; measured Eγ, Iγ, γ(θ), oriented nuclei. 172Yb levels deduced J, π, γ-branching, δ, X(E0/E2), monopole transition density. Mass separated source implantation in Gd, Fe, 3He-4He dilution refrigerator, Ge(Li) detectors. Interacting boson model.

doi: 10.1088/0305-4616/10/8/016
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1984PR04      Czech.J.Phys. B34, 199 (1984)

I.Prochazka, M.Finger, N.A.Lebedev, V.N.Pavlov, P.Simecek, M.G.Badzhelidze, L.Ehn, Z.Janout

Nuclear Orientation of 149Pm in Gadolinium Host

RADIOACTIVITY 147Nd(β-) [from Nd(n, γ), E=thermal]; 149Pm(β-) [from 149Nd(β--decay)]; measured γ(θ, T), oriented nuclei, Gd host. 149Pm deduced hyperfine splitting parameter in Gd host. 149Sm transition deduced A2 coefficient, δ.


1983KR15      Nucl.Phys. A408, 45 (1983)

T.I.Kracikova, M.Finger, S.Davaa, V.M.Tsupko-Sitnikov, V.A.Deryuga, W.D.Hamilton

The Decay of Oriented 147Gd

RADIOACTIVITY 147Gd(EC), (β+) [from Ta(p, X)]; measured γ(θ), oriented nuclei. 147Eu deduced levels, J, π, α, γ-multipolarities, B(λ). Chemical, mass separated targets, Ge(Li) detectors.

NUCLEAR STRUCTURE 147Eu; calculated levels, J, π, δ, B(λ), wave functions. Quasiparticle-phonon model.

doi: 10.1016/0375-9474(83)90347-0
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1983KR18      Hyperfine Interactions 15/16, 37 (1983)

T.I.Kracikova, S.Davaa, M.Finger, J.Kvasil, W.D.Hamilton

Nuclear Orientation of 171Lu and 173Lu

RADIOACTIVITY 171Lu(EC), (β+); 173Lu(EC) [from Ta(p, X), E=0.66, 10 GeV]; measured γ(θ), oriented nuclei. 171Yb levels deduced J, δ. 173Yb levels deduced δ. Quasiparticle-phonon model, Coriolis interaction.


1983KR19      Hyperfine Interactions 15/16, 73 (1983)

T.I.Kracikova, S.Davaa, M.Finger, V.A.Deryuga

Magnetic Dipole Moments of the 145-149Eu Ground States

RADIOACTIVITY 145,146Eu(EC), (β+); 147,148Eu(EC), (β+), (α); 149Eu(EC) [from Ta(p, X), E=660 MeV]; measured γ(θ), oriented nuclei. 145,146,147,148,149Eu level deduced μ. Chemical, mass separated source implantation in Fe, Gd.


1983KV01      Czech.J.Phys. B33, 626 (1983)

J.Kvasil, T.I.Kracikova, S.Davaa, M.Finger, B.Choriev

Coriolis Coupling and Electromagnetic Properties of Rotational Bands in Odd-A Yb Nuclei. II. The Nucleus 169Yb

NUCLEAR STRUCTURE 169Yb; calculated levels, B(λ), δ(E2/M1), rotational bands. Quasiparticle-phonon model, Coriolis interaction.

doi: 10.1007/BF01832149
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1983LI06      Phys.Scr. 27, 8 (1983)

P.O.Lipas, J.Kumpulainen, E.Hammaren, T.Honkaranta, M.Finger, T.I.Kracikova, I.Prochazka, J.Ferencei

Study of Even Gd Nuclei by Decay of Oriented Tb, with Analysis by Simple Boson Models

NUCLEAR STRUCTURE 150,152,154,156,158,160Gd; calculated levels, B(E2), monopole transition densities, B(E2)/B(E0). Interacting boson model.

RADIOACTIVITY 150,152,154Tb(EC), (β+), 156Tb(EC) [from Ta(p, X), E=660 MeV]; measured γ(θ), oriented nuclei. 150,152,154,156Gd deduced levels, J, π, γ-multipolarity, δ, rotational band characteristics. TbGd samples, dilution refrigeration. Interacting boson model.

doi: 10.1088/0031-8949/27/1/002
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1983NO10      Czech.J.Phys. B33, 1070 (1983)

D.Novakova, J.Rikovska, A.Jankech, J.Ferencei, V.N.Pavlov, M.Finger

Linear Polarization and Directional Distribution of Gamma-Rays from Oriented 172Lu

RADIOACTIVITY 172Lu(EC) [from Pb(p, X), E=660 MeV]; measured Eγ, γ linear polarization, γ(θ), oriented nuclei. 172Yb levels deduced J, π, K, δ, band structure. Radioactive sample in Gd matrix.


1983PR04      Czech.J.Phys. B33, 540 (1983)

I.Prochazka, J.Konicek, M.Finger, A.Jankech, T.I.Kracikova, P.Simecek, V.M.Tsupko-Sitnikov, W.D.Hamilton, J.Muhonen

Nuclear Orientation of 147Tb(T1/2=1.7 h), 149Tb(T1/2=4.15 h) and 151Tb(T1/2=17.7 h) in a Gadolinium Host

RADIOACTIVITY 147,149,151Tb(β+), (EC) [from Ta(p, X), E=660 MeV]; measured γ(θ), oriented nuclei. 147Tb level deduced T1/2, J, log ft. 149,151Tb level deduced J. 147,149,151Gd deduced γ-transition energy, γ-branching.


1983PR07      Czech.J.Phys. B33, 903 (1983)

I.Prochazka, J.Konicek, M.Finger, E.Simeckova, P.Simecek, V.M.Tsupko-Sitnikov, J.Muhonen

The Decay of 153Tb Oriented in a Gadolinium Host

RADIOACTIVITY 153Tb(EC), (β+) [from Ta(p, X), E=660 MeV]; measured Eγ, Iγ, γ(θ), oriented nuclei. 153Gd levels deduced J, π, δ. Chemical purification, implantation in Gd, 3He-4He dilution refrigerator. Comparison with particle-rotor model predictions.


1983RI05      Z.Phys. A311, 185 (1983)

J.Rikovska, D.Novakova, J.Ferencei, M.Finger

Gamma-Ray Polarization and Nuclear Orientation Measurements on 182Ta(Fe)

RADIOACTIVITY 182Ta(β-); measured linear polarization, γγ(θ), oriented nuclei. 182W deduced transition γ-multipolarity, δ, B(λ) ratios, hindrance factors.

doi: 10.1007/BF01415104
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1983RI15      Hyperfine Interactions 15/16, 83 (1983)

J.Rikovska, A.Machova, D.Novakova, J.Ferencei, M.Finger

Nuclear Magnetic Moment of 161Tb

RADIOACTIVITY 161Tb(β-) [from 160Gd(n, γ)161Gd(β--decay)]; measured γ(θ), oriented nuclei, Gd host. 161Tb level deduced μ, quadrupole moment. 161Dy transitions deduced δ.

doi: 10.1007/BF02159721
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1982DA23      J.Phys.(London) G8, 1585 (1982)

S.Davaa, T.I.Kracikova, M.Finger, J.Kvasil, V.I.Fominykh, W.D.Hamilton

Nuclear Orientation Study of the Decay of 169Lu

RADIOACTIVITY 169Lu(β+), (EC) [from Ta(p, X), E=10 GeV]; measured γ(θ), oriented nuclei. 169Yb deduced levels, J, π, δ, B(λ). Quasiparticle-phonon model, Coriolis interaction. Chemical, mass separated sources.

doi: 10.1088/0305-4616/8/11/011
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1982DE26      Izv.Akad.Nauk SSSR, Ser.Fiz. 46, 860 (1982)

V.A.Deryuga, T.I.Kratsikova, M.Finger, Ya.Dupak, A.I.Vdovin, W.D.Hamilton

Study of the Decay of Oriented 145Eu Nuclei

RADIOACTIVITY 145Eu(EC), (β+); measured γ(θ), oriented nuclei in Fe. 145Sm levels deduced J, π, δ(E2/M1), δ(M2/E1). Ge(Li) detectors, 3He-4He dilution refrigerator. Quasiparticle plus phonon calculations.


1982DE27      Izv.Akad.Nauk SSSR, Ser.Fiz. 46, 867 (1982)

V.A.Deryuga, T.I.Kratsikova, M.Finger, V.M.Tsupko-Sitnikov, Yu.V.Yushkevich

Study of the Decay of Oriented 147Eu Nuclei

RADIOACTIVITY 147Eu(EC), (β+) [from Ta(p, X), E=660 MeV]; measured γ(θ), oriented nuclei in Fe, Gd; deduced μ. 147Sm levels deduced J, π, δ(E2/M1), δ(M2/E1). Ge(Li) detector, 3He-4He dilution refrigerator. Quasiparticle plus phonon model.


1981FE01      Czech.J.Phys. B31, 511 (1981)

J.Ferencei, M.Finger, J.Dupak, A.Jankech, J.Konicek, A.F.Shchus, J.Rikovska, A.Machova, D.W.Hamilton

Nuclear Orientation of 152,154Tb in Gadolinium

RADIOACTIVITY 152,154Tb [from Ta(p, X), E=660 MeV]; measured γγ(θ, H, T) on oriented nuclei in Gd. 154Tb level deduced J. 154Gd levels deduced J. 152Gd levels deduced J, δ. Rotational-vibrational model, dynamic deformation theory.

doi: 10.1007/BF01596417
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1981KR08      Czech.J.Phys. B31, 527 (1981)

T.I.Kracikova, M.Finger, S.Davaa, J.Dupak, V.N.Pavlov, N.A.Lebedev, W.D.Hamilton, G.Girit

Nuclear Orientation Studies of the 51.5 min 167Lu Decay

RADIOACTIVITY 167Lu [from Ta(p, X), E=660 MeV, chemical separation]; measured Eγ, Iγ, γ(θ, T) on oriented nuclei in Gd. 167Yb deduced levels, J, π, δ, rotational band structure. Mass separation, top loading dilution refrigerator.


1981KV02      Czech.J.Phys. B31, 1376 (1981)

J.Kvasil, T.I.Kracikova, M.Finger, B.Choriev

Coriolis Coupling and Electromagnetic Properties of Rotational Bands in Odd-A Yb Nuclei

NUCLEAR STRUCTURE 167Yb; calculated levels, B(λ), δ, μ, rotational band properties. Quasiparticle-phonon model, Coriolis interaction.

doi: 10.1007/BF01595381
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1981PR05      Czech.J.Phys. B31, 522 (1981)

I.Prochazka, J.Konicek, J.Dupak, M.Finger, M.I.Fominykh, T.I.Kracikova, V.N.Pavlov, M.Petrik, V.M.Tsupko-Sitnikov, J.Muhonen

On the Magnetic Dipole Moment of the 153Tb Ground State

RADIOACTIVITY 153Tb [from Ta(p, X), E=660 MeV]; measured γ(θ, H, T) on oriented nuclei in Gd; deduced hfs parameter a. 153Tb level deduced μ.


1981RO07      Czech.J.Phys. B31, 555 (1981)

M.Rotter, B.Sedlak, J.Dupak, M.Finger, V.N.Pavlov

NMR on Oriented 54Mn in Nickel

NUCLEAR MOMENTS 54Mn; measured NMR on oriented nuclei in Ni; deduced hyperfine field. Thin 54MnNi polycrystalline foil.

doi: 10.1007/BF01596422
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1979DU08      Czech.J.Phys. B29, 361 (1979)

J.Dupak, M.Finger, J.Konicek, T.Kracikova, J.Muhonen, V.N.Pavlov, I.Prochazka, W.D.Hamilton

Nuclear Orientation Study of 155Tb Decay

RADIOACTIVITY 155Tb; measured γ(θ), oriented nuclei, deduced M1 hyperfine splitting parameter; calculated ground state μ. 155Gd levels deduced δ.


1979ER13      Izv.Akad.Nauk SSSR, Ser.Fiz. 43, 2176 (1979); Bull.Acad.Sci.USSR, Phys.Ser. 43, No.10, 132 (1979)

A.L.Erzinkyan, V.V.Muraveva, V.P.Parfenova, M.Finger, V.S.Shpinel

Determination of the Magnetic Moment of 147Eu

RADIOACTIVITY 147Eu [from 147Gd(EC+β+) decay produced by Ta(p, X), E=660 MeV]; measured γ(θ, T), oriented nuclei; deduced μ, equilibrium deformations. 147Sm transition deduced δ. Adiabatic demagnetization cryostat, ultralow temperatures, Ge(Li) detector.


1979GR22      Izv.Akad.Nauk SSSR, Ser.Fiz. 43, 53 (1979); Bull.Acad.Sci.USSR, Phys.Ser. 43, No.1, 42 (1979)

I.I.Gromova, Y.Dupak, Y.Konichek, T.I.Kratsikova, N.A.Lebedev, B.S.Neganov, V.N.Pavlov, I.Prokhazka, M.Finger, V.M.Tsupko-Sitnikov, A.F.Shchus, A.Makhove, W.D.Hamilton, R.A.Fox

Study of the Decay of Oriented 160Tb Nuclei

RADIOACTIVITY 160Tb; measured γ(θ), γ(θ, H, T), polarized nuclei; deduced magnetic hyperfine field, quadrupole interaction in Gd. 160Dy deduced levels, δ(E1/M2). Ge(Li) detectors.


1979RI17      Czech.J.Phys. B29, 620 (1979)

J.Rikovska, A.Machova, W.D.Hamilton, J.Dupak, C.C.Mo, M.Finger, N.A.Lebedev, B.S.Neganov, V.N.Pavlov, A.F.Shchus

Nuclear Orientation of 156Tb in Gadolinium Matrix

RADIOACTIVITY 156Tb; measured Iγ(θ), oriented nuclei; deduced M1, E2 hyperfine splitting parameters; calculated ground state μ, quadrupole moment. 156Gd levels deduced δ, B(E2), branching ratio. Rotational-vibration, pairing-plus-quadrupole models.


1978HA42      J.Phys.(London) G4, 1871 (1978)

W.D.Hamilton, R.A.Fox, D.D.Warner, M.Finger, T.I.Kracikova, V.N.Pavlov, A.F.Shchus

Nuclear Orientation Studies of the N = 86 Nucleus 150Gd

RADIOACTIVITY 150Tb [from Ta(p, X), E=600 MeV]; measured γ(θ). 150Gd deduced levels, J, π, δ, E0-E2 mixing ratios. Chemical, mass-separated source implanted in Gd. 3He, 4He dilution refrigerator.

doi: 10.1088/0305-4616/4/12/008
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1978WA14      J.Phys.(London) G4, 1887 (1978)

D.D.Warner, W.D.Hamilton, R.A.Fox, M.Finger, J.Konicek, V.N.Pavlov, V.M.Tsupko-Sitnikov

Directional Distribution of γ Rays in 153Gd from the Decay of 153Tb

RADIOACTIVITY 153Tb [from Ta(p, X), E=600 MeV]; measured γ(θ). 153Gd deduced levels, J, π, δ. Comparison with particle-rotor model. Chemical mass-separated source implanted in Gd. 3He-4He dilution refrigerator.

doi: 10.1088/0305-4616/4/12/009
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1975KH03      J.Phys. (London) G1, 727 (1975)

S.-N.Khan, R.A.Fox, W.D.Hamilton, M.Finger

Magnetic Moment Measurements of Some Nuclear Levels in 155Gd, 156Gd and 160Dy

RADIOACTIVITY 155,156,160Tb; measured γγ(θ, H). 155,156Gd, 160Dy levels deduced μ.

doi: 10.1088/0305-4616/1/7/007
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1975UL01      J.Phys.(London) G1, 476 (1975)

I.Uluer, C.A.Kalfas, W.D.Hamilton, R.A.Fox, D.D.Warner, M.Finger, Do Kim Chung

Multipole Mixing Ratios of Transitions in 156Gd

RADIOACTIVITY 156Dy; measured Eγ, γγ(θ), γce(θ), I(ce), γ(θ, H). 156Gd deduced levels, γ-mixing, J, π.

doi: 10.1088/0305-4616/1/4/013
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1975WA01      J.Phys.(London) G1, 95 (1975)

D.D.Warner, W.D.Hamilton, R.A.Fox, M.Finger

Nuclear Orientation and Angular Correlation Studies of Gamma Ray Cascades in 155Gd Populated by the Decay of 155Tb

RADIOACTIVITY 155Tb; measured Iγ(θ), γγ(θ). 155Gd levels deduced J, π, γ-mixing.

doi: 10.1088/0305-4616/1/1/012
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1973SE13      Nucl.Phys. A212, 45 (1973)

C.Sebille-Schuck, M.Finger, R.Foucher, J.P.Husson, J.Jastrzebski, V.Berg, S.G.Malmskog, G.Astner, B.R.Erdal, P.Patzelt, P.Siffert

The Decay of 187Pt; Comparison of the Levels of 187Ir with Those of Heavier Odd Mass Iridium Isotopes

RADIOACTIVITY 187Pt [from Pb(p, 3pxn) Hg (EC) Au (EC) Pt; mass separated]; measured T1/2, Eγ, Iγ, E(ce), I(ce), ICC, γγ-coin, (ce)(ce)- coin, γγ delay, γce delay, (ce)(ce)- delay. 187Au; measured T1/2. 187Ir deduced levels, J, π, T1/2, M1/E2 admixtures, B(M1), B(E1), B(E2). Ge(Li), Si(Li), magnetic spectrometers.

doi: 10.1016/0375-9474(73)90037-7
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1972AK03      Izv.Akad.Nauk SSSR, Ser.Fiz. 36, 2066 (1972); Bull.Acad.Sci.USSR, Phys.Ser. 36, 1820 (1973)

A.I.Akhmadzhanov, B.Bayar, R.Broda, V.Valyus, N.G.Zaitseva, H.W.Siebert, S.M.Kamalkhodzhaev, G.Muziol, A.F.Novgorodov, W.Neubert, M.Finger, U.Hagemann, H.Shtrusnyi

The New Isotopes 178Ir, 180Ir, 181Ir. Decay Scheme for 182Ir

RADIOACTIVITY 178,180,181,182Ir; measured T1/2, Eγ, Iγ, γγ-coin. 182Os deduced levels, J, π.


1972FI12      Nucl.Phys. A188, 369 (1972)

M.Finger, R.Foucher, J.P.Husson, J.Jastrzebski, A.Johnson, G.Astner, B.R.Erdal, A.Kjelberg, P.Patzelt, A.Hoglund, S.G.Malmskog, R.Henck

Properties of Low-Lying Levels in the Even Platinum Nuclei (182 < A < 192)

RADIOACTIVITY 192Au, 190Au, 188Au, 186Au, 184Au, 182Au[from pb(p, 3pxn)Hg-Au, mass separated]; measured Eγ, Iγ, E(ce), I(ce), γγ-, ceγ-coin, cece-delay, ceγ--delay. 182,184,186,188,190,192Pt deduced levels, J, π, ICC, T1/2. Au chemical purification. Magnetic spectrometers, Ge(Li), Si(Li).

doi: 10.1016/0375-9474(72)90064-4
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1972KA45      Nucl.Phys. A196, 615 (1972)

C.A.Kalfas, W.D.Hamilton, R.A.Fox, M.Finger

Multipole Mixing Ratios of Electromagnetic Transitions in 152Gd

RADIOACTIVITY 152Tb [(17.5 H)from Ta(p, spallation), chem ]; measured γγ(θ), γ(θ), ekγ(θ). 152Gd transitions deduced E2/M1, E0/E2, , E3/M2/E1 mixing ratios. Natural targets, mass-separated source, polarized nuclei;Ge(Li), NaI(Tl) detectors, magnetic spectrometer.

doi: 10.1016/0375-9474(72)90797-X
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1970AD05      Izv.Akad.Nauk SSSR, Ser.Fiz. 34, 813 (1970); Bull.Acad.Sci.USSR, Phys.Ser. 34, 722 (1971)

J.Adam, P.Galan, K.Y.Gromov, Z.T.Zhelev, V.V.Kuznetsov, M.Y.Kuznetsova, N.A.Lebedev, O.B.Nielsen, T.Pazmanova, J.Urbanec, M.Finger

Study of the Radiation from 152Tb

RADIOACTIVITY 152Tb[from Ta(660-MeV p, X)]; measured Eγ, Iγ, I(ce), γce-, βγ-, γγ-coin. 152Gd deduced levels, J, K, π, γ-multipolarity, ICC, B(E2).


1970ER09      Izv.Akad.Nauk SSSR, Ser.Fiz. 34, 1635 (1970); Bull.Acad.Sci.USSR, Phys.Ser. 34, 1452 (1971)

B.R.Erdal, M.Finger, R.Foucher, J.P.Husson, J.Jastrzebski, A.Johnson, R.Henck, P.Siffert, G.Astner, A.Kjelberg, P.Patzelt

Properties of Low-Lying Levels of Even Isotopes of Pt

RADIOACTIVITY 184,186,188,190,192Au; measured Eγ, Iγ. 184,186,188,190,192Pt deduced levels, J, π, γ-branching. Isolde on-line mass separator.


1970FI16      CERN-70-29 (1970); see 1970FIZZ

M.Finger, R.Foucher, J.P.Husson, J.Jastrzebski, A.Johnson, C.Sebille, R.Henck, J.M.Kuchly, R.Regal, P.Siffert, G.Astner, B.R.Erdal, E.Hagebo, A.Kjelberg, F.Munnich, P.Patzelt, E.Beck, H.Kugler

Main Decay Characteristics of Mercury Isotopes and their Daughter Products (182 < A < 192)


1970HA18      Nucl.Phys. A148, 249 (1970)

P.G.Hansen, H.L.Nielsen, K.Wilsky, M.Alpsten, M.Finger, A.Lindahl, R.A.Naumann, O.B.Nielsen

Studies of the α-Active Isotopes of Mercury, Gold, and Platinum

RADIOACTIVITY 179,180,181,182,183,184,185,186,187Hg[from Pb(p, X)]; 181,182,183,184,185Au, 175,176,177,178,179Pt[from Hg decay]; measured T1/2, Eα, Iα, αγ-coin; deduced Qα, α-branching, T1/2(α). 177,178,180,181,183Pt, 174Os deduced levels. Si surface-barrier detector, NaI(Tl)-Ge(Li) coin.

doi: 10.1016/0375-9474(70)90622-6
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1969GA09      Czech.J.Phys. 19B, 232 (1969)

P.Galan, M.Kuznetsova, M.Finger, J.Jursik

Method of Data Processing of Two-Dimentional Coincidence Spectra and its Application for the Analysis of γ-γ Coincidence Spectra Measured in 155Tb with Ge(Li)-Detectors

RADIOACTIVITY 155Tb; measured Eγ, Iγ, γγ-coin. 155Gd deduced levels. Ge(Li) detector, two-dimensional spectra.

doi: 10.1007/BF01689853
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1969GA28      Czech.J.Phys. 19B, 1153 (1969)

P.Galan, V.V.Kuznetsov, M.Y.Kuznetsova, J.Urbanec, M.Finger, D.Christov, O.B.Nielsen, J.Jursik

155Gd Levels Excited in the Decay of 155Tb

RADIOACTIVITY 155Tb; measured Eγ, Iγ, I(ce), ceγ-, γγ-coin; deduced log ft, Q. 155Gd deduced levels, J, π, ICC, K, B(EL), γ-multipolarities.

doi: 10.1007/BF01691762
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1967AB12      JINR-P6-3343 (1967)

A.Abdumalikov, I.Adam, J.Vrzal, V.Gnatovich, K.Gromov, M.Kuznetsova, V.Kuznetsov, J.Liptak, V.Morozov, G.Musiol, J.Urbanec, M.Finger, V.Chumin

On the Decay of 166Tm

RADIOACTIVITY 166Tm; measured Eγ, Iγ, I(ce), γγ-coin, ceγ-coin deduced log ft. 166Er deduced levels, J, π, ICC, γ-multipolarity.


1967AD02      Izv.Akad.Nauk SSSR, Ser.Fiz. 31, 122 (1967); Bull.Acad.Sci.USSR, Phys.Ser. 31, 114 (1968)

N.Adam, K.Wilsky, Z.Zhelev, M.Jorgensen, M.Krivopustov, V.Kuznetsov, O.B.Nielsen, M.Finger

Investigation of the Radiation from 145Eu

NUCLEAR STRUCTURE 145Eu, 147Eu; measured not abstracted; deduced nuclear properties.


1967GN01      Izv.Akad.Nauk SSSR, Ser.Fiz. 31, 587 (1967); Bull.Acad.Sci.USSR, Phys.Ser. 31, 581 (1968)

V.Gnatovich, K.Y.Gromov, M.Finger, J.Vrzal, J.Liptak, J.Urbanets

Concerning Three-Quasi-Particle Levels in 163Er

NUCLEAR STRUCTURE 163Tm; measured not abstracted; deduced nuclear properties.


1967GR12      Nucl.Phys. A99, 585 (1967)

K.Y.Gromov, V.V.Kuznetsov, M.Y.Kuznetsova, M.Finger, J.Urbanec, O.B.Nielsen, K.Wilsky, O.Skilbreid, M.Jorgensen

The Decay of 152Tb

NUCLEAR STRUCTURE 152Tb; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0375-9474(67)90373-9
Citations: PlumX Metrics


1966AD01      JINR-P-2581 (1966)

I.Adam, K.Wilsky, Z.Zhelev, M.Jorgensen, M.Krivopustov, V.Kuznetsov, O.B.Nielsen, M.Finger

Investigation of 145Eu Irradiation

NUCLEAR STRUCTURE 145Eu; measured not abstracted; deduced nuclear properties.


1966AD02      Program and Theses, Proc.16th All-Union Conf.Nucl.Spectroscopy and Struct.of at.Nuclei, Moscow, p.134 (1966)

I.Adam, Z.Zhelev, M.I.Krivopustov, V.V.Kuznetsov, M.Finger, K.Wilsky, M.Jorgensen, O.B.Nielsen

Investigation of the Radiation from 145Eu

NUCLEAR STRUCTURE 145Eu; measured not abstracted; deduced nuclear properties.


1965AD05      JINR-P-2412, p.61 (1965)

I.Adam, Z.Zhelev, Lu Si-Tin, M.Finger, E.Khermann, V.Chumin

Spectrum of Conversion Electrons from 147Eu in the Range 700 - 1600 Kev

NUCLEAR STRUCTURE 147Eu; measured not abstracted; deduced nuclear properties.


1965AD06      JINR-P-2412, p.58 (1965)

I.Adam, Z.Zhelev, M.Y.Kuznetzova, Lu Si-Tin, N.A.Lebedev, M.Finger

Study of ce-Spectra of 146Eu in the Range 1500-2700 keV

NUCLEAR STRUCTURE 146Eu; measured not abstracted; deduced nuclear properties.


1964MA36      Czech.J.Phys. 14B, 240 (1964)

L.Maly, Z.Plajner, J.Jursik, M.Finger

Decay of Re186

NUCLEAR STRUCTURE 186Re; measured not abstracted; deduced nuclear properties.

doi: 10.1007/BF01689040
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