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NSR database version of April 26, 2024.

Search: Author = A.Rogachevskiy

Found 8 matches.

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2014BR06      Phys.Rev.Lett. 112, 212301 (2014)

L.J.Broussard, H.O.Back, M.S.Boswell, A.S.Crowell, P.Dendooven, G.S.Giri, C.R.Howell, M.F.Kidd, K.Jungmann, W.L.Kruithof, A.Mol, C.J.G.Onderwater, R.W.Pattie, Jr., P.D.Shidling, M.Sohani, D.J.van der Hoek, A.Rogachevskiy, E.Traykov, O.O.Versolato, L.Willmann, H.W.Wilschut, A.R.Young

Measurement of the Half-Life of the T= 1/2 Mirror Decay of 19Ne and its Implication on Physics Beyond the Standard Model

RADIOACTIVITY 19Ne(EC) [from 19F(p, n), E=10.5 MeV/nucleon]; measured decay products, Eγ, Iγ; deduced T1/2. Comparison with available data and systematics.

doi: 10.1103/PhysRevLett.112.212301
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Data from this article have been entered in the XUNDL database. For more information, click here.


2010AC01      J.Phys.(London) G37, 045103 (2010)

N.L.Achouri, J.C.Angelique, G.Ban, B.Bastin, B.Blank, S.Dean, P.Dendooven, J.Giovinazzo, S.Grevy, K.Jungmann, B.Laurent, E.Lienard, O.Naviliat-Cuncic, N.A.Orr, A.Rogachevskiy, M.Sohani, E.Traykov, H.Wilschut

The β-γ decay of 21Na

RADIOACTIVITY 21Na(β+) [from 1H(21Ne, n), E=30 Mev/nucleon]; measured TOF, Eγ, Iγ; deduced Gamow-Teller branching ratios.

RADIOACTIVITY 22Mg(EC); measured TOF, Eγ, Iγ; deduced Gamow-Teller branching ratios.

doi: 10.1088/0954-3899/37/4/045103
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2010HY01      Phys.Rev. C 81, 024303 (2010)

S.Hyldegaard, M.Alcorta, B.Bastin, M.J.G.Borge, R.Boutami, S.Brandenburg, J.Buscher, P.Dendooven, C.Aa.Diget, P.Van Duppen, T.Eronen, S.P.Fox, L.M.Fraile, B.R.Fulton, H.O.U.Fynbo, J.Huikari, M.Huyse, H.B.Jeppesen, A.S.Jokinen, B.Jonson, K.Jungmann, A.Kankainen, O.S.Kirsebom, M.Madurga, I.Moore, A.Nieminen, T.Nilsson, G.Nyman, G.J.G.Onderwater, H.Penttila, K.Perajarvi, R.Raabe, K.Riisager, S.Rinta-Antila, A.Rogachevskiy, A.Saastamoinen, M.Sohani, O.Tengblad, E.Traykov, Y.Wang, K.Wilhelmsen, H.W.Wilschut, J.Aysto

R-matrix analysis of the β decays of 12N and 12B

RADIOACTIVITY 12N(β+), 12B(β-); measured 3α summed spectra and associated branching ratios for breakup via the 8Be ground-state and via excited states of 8Be. 12C; deduced levels, resonances, Gammow-Teller strengths and widths using multilevel, many-channel R-matrix formalism.

doi: 10.1103/PhysRevC.81.024303
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Data from this article have been entered in the XUNDL database. For more information, click here.


2009HY01      Phys.Lett. B 678, 459 (2009)

S.Hyldegaard, C.Forssen, C.Aa.Diget, M.Alcorta, F.C.Barker, B.Bastin, M.J.G.Borge, R.Boutami, S.Brandenburg, J.Buscher, P.Dendooven, P.Van Duppen, T.Eronen, S.Fox, B.R.Fulton, H.O.U.Fynbo, J.Huikari, M.Huyse, H.B.Jeppesen, A.Jokinen, B.Jonson, K.Jungmann, A.Kankainen, O.Kirsebom, M.Madurga, I.Moore, P.Navratil, T.Nilsson, G.Nyman, G.J.G.Onderwater, H.Penttila, K.Perajarvi, R.Raabe, K.Riisager, S.Rinta-Antila, A.Rogachevskiy, A.Saastamoinen, M.Sohani, O.Tengblad, E.Traykov, J.P.Vary, Y.Wang, K.Wilhelmsen, H.W.Wilschut, J.Aysto

Precise branching ratios to unbound 12C states from 12N and 12B β-decays

NUCLEAR REACTIONS 1H(12C, n), 2H(11B, p), 12C(p, n), 11B(d, p), E not given; measured Eγ, Iγ, Eα, Iα, γα-coin, αα-coin, decay spectra; deduced branching ratio, log ft, B(GT) to various 12C states. Comparison with no-core shell model calculations.

RADIOACTIVITY 12B(β-), 12N(β+); deduced branching ratio, log ft, B(GT) to various 12C states. Comparison with no-core shell model calculations.

doi: 10.1016/j.physletb.2009.06.064
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2008HY03      Int.J.Mod.Phys. E17, 2182 (2008)

S.Hyldegaard, H.O.U.Fynbo, K.Riisager, S.Brandenburg, P.Dendooven, K.Jungmann, C.J.G.Onderwater, A.Rogachevskiy, M.Sohani, E.Traykov, H.W.Wilschut, J.Buscher, M.Huyser, R.Raabe, M.Alcorta, M.J.G.Borge, M.Madurga, O.Tengblad, C.A.A.Diget, B.R.Fulton, A.S.Jokinen, K.Perajarvi, A.Saastamoinen, J.Aysto, B.Jonson, G.Nyman

Studies of 12C using β-decays

NUCLEAR REACTIONS 1H(12C, X)12N, 2H(11B, X)12B, E not given; measured Eα, Iα; deduced branching ratios, Gamow-Teller transition strengths.

doi: 10.1142/S0218301308011318
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2007TR01      Nucl.Instrum.Methods Phys.Res. A572, 580 (2007)

E.Traykov, A.Rogachevskiy, M.Boswell, U.Dammalapati, P.Dendooven, O.C.Dermois, K.Jungmann, C.J.G.Onderwater, M.Sohani, L.Willmann, H.W.Wilschut, A.R.Young

Production of radioactive nuclides in inverse reaction kinematics

NUCLEAR REACTIONS 1H(20Ne, 20Na), E=22.3 MeV/nucleon; 2H(20Ne, 21Na), E=22.3 MeV/nucleon; 1H(21Ne, 21Na), E=43 MeV/nucleon; measured particle spectra, yields.

doi: 10.1016/j.nima.2006.11.053
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2003BE56      Nucl.Phys. A721, 1107c (2003)

G.P.A.Berg, P.Dendooven, O.Dermois, M.N.Harakeh, R.Hoekstra, S.Hoekstra, K.Jungmann, S.Kopecky, V.Kravchuk, R.Morgenstern, A.Rogachevskiy, L.Willmann, H.W.Wilschut

TRIμP - A Radioactive Isotope Trapping Facility at KVI

doi: 10.1016/S0375-9474(03)01296-X
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2003JU03      Phys.Scr. T104, 178 (2003)

K.Jungmann, G.P.Berg, U.Dammalapati, P.Dendooven, O.Dermois, M.N.Harakeh, R.Hoekstra, R.Morgenstern, A.Rogachevskiy, M.Sanchez-Vega, R.Timmermans, E.Traykov, L.Willmann, H.W.Wilschut

TRIμP-Trapped Radioactive Atoms-μicrolaboratories for Fundamental Physics

doi: 10.1238/Physica.Topical.104a00178
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