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NSR database version of May 22, 2024.

Search: Author = T.Kihm

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2024AG03      Eur.Phys.J. C 84, 34 (2024)

M.Agostini, A.Alexander, G.R.Araujo, A.M.Bakalyarov, M.Balata, I.Barabanov, L.Baudis, C.Bauer, S.Belogurov, A.Bettini, L.Bezrukov, V.Biancacci, E.Bossio, V.Bothe, V.Brudanin, R.Brugnera, A.Caldwell, C.Cattadori, A.Chernogorov, T.Comellato, V.D'Andrea, E.V.Demidova, N.D.Marco, E.Doroshkevich, F.Fischer, M.Fomina, A.Gangapshev, A.Garfagnini, C.Gooch, P.Grabmayr, V.Gurentsov, K.Gusev, J.Hakenmuller, S.Hemmer, W.Hofmann, J.Huang, M.Hult, L.V.Inzhechik, J.J.Csathy, J.Jochum, M.Junker, V.Kazalov, Y.Kermaidic, H.Khushbakht, T.Kihm, K.Kilgus, I.V.Kirpichnikov, A.Klimenko, R.Kneißl, K.T.Knopfle, O.Kochetov, V.N.Kornoukhov, M.Korosec, P.Krause, V.V.Kuzminov, M.Laubenstein, M.Lindner, I.Lippi, A.Lubashevskiy, B.Lubsandorzhiev, G.Lutter, C.Macolino, B.Majorovits, W.Maneschg, L.Manzanillas, G.Marshall, M.Misiaszek, M.Morella, Y.Muller, I.Nemchenok, L.Pandola, K.Pelczar, L.Pertoldi, P.Piseri, A.Pullia, C.Ransom, L.Rauscher, M.Redchuk, S.Riboldi, N.Rumyantseva, C.Sada, F.Salamida, S.Schonert, J.Schreiner, M.Schutt, A.-K.Schutz, O.Schulz, M.Schwarz, B.Schwingenheuer, O.Selivanenko, E.Shevchik, M.Shirchenko, L.Shtembari, H.Simgen, A.Smolnikov, D.Stukov, A.A.Vasenko, A.Veresnikova, C.Vignoli, K.v.Sturm, T.Wester, C.Wiesinger, M.Wojcik, E.Yanovich, B.Zatschler, I.Zhitnikov, S.V.Zhukov, D.Zinatulina, A.Zschocke, A.J.Zsigmond, K.Zuber, G.Zuzel, GERDA Collaboration

An improved limit on the neutrinoless double-electron capture of 36Ar with GERDA

RADIOACTIVITY 36Ar(2EC); measured decay products, Eγ, Iγ; deduced T1/2 limit. Comparison with available data. The GERmanium Detector Array (Gerda) experiment.

doi: 10.1140/epjc/s10052-023-12280-6
Citations: PlumX Metrics


2023AG05      Phys.Rev.Lett. 131, 142501 (2023)

M.Agostini, A.Alexander, G.R.Araujo, A.M.Bakalyarov, M.Balata, I.Barabanov, L.Baudis, C.Bauer, S.Belogurov, A.Bettini, L.Bezrukov, V.Biancacci, E.Bossio, V.Bothe, R.Brugnera, A.Caldwell, S.Calgaro, C.Cattadori, A.Chernogorov, P.-J.Chiu, T.Comellato, V.D'Andrea, E.V.Demidova, A.Di Giacinto, N.Di Marco, E.Doroshkevich, F.Fischer, M.Fomina, A.Gangapshev, A.Garfagnini, C.Gooch, P.Grabmayr, V.Gurentsov, K.Gusev, S.Hackenmuller, S.Hemmer, W.Hofmann, J.Huang, M.Hult, L.V.Inzhechik, J.Janicsko Csathy, J.Jochum, M.Junker, V.Kazalov, Y.Kermaidic, H.Khushbakht, T.Kihm, K.Kilgus, I.V.Kirpichnikov, A.Klimenko, K.T.Knopfle, O.Kochetov, V.N.Kornoukhov, P.Krause, V.V.Kuzminov, M.Laubenstein, B.Lehnert, M.Lindner, I.Lippi, A.Lubashevskiy, B.Lubsandorzhiev, G.Lutter, C.Macolino, B.Majorovits, W.Maneschg, L.Manzanillas, G.Marshall, M.Miloradovic, R.Mingazheva, M.Misiaszek, M.Morella, Y.Muller, I.Nemchenok, M.Neuberger, L.Pandola, K.Pelczar, L.Pertoldi, P.Piseri, A.Pullia, C.Ransom, L.Rauscher, M.Redchuk, S.Riboldi, N.Rumyantseva, C.Sada, S.Sailer, F.Salamida, S.Schonert, J.Schreiner, M.Schutt, A.-K.Schutz, O.Schulz, M.Schwarz, B.Schwingenheuer, O.Selivanenko, E.Shevchik, M.Shirchenko, L.Shtembari, H.Simgen, A.Smolnikov, D.Stukov, S.Sullivan, A.A.Vasenko, A.Veresnikova, C.Vignoli, K.von Sturm, T.Wester, C.Wiesinger, M.Wojcik, E.Yanovich, B.Zatschler, I.Zhitnikov, S.V.Zhukov, D.Zinatulina, A.Zschocke, A.J.Zsigmond, K.Zuber, G.Zuzel

Final Results of GERDA on the Two-Neutrino Double-β Decay Half-Life of 76Ge

RADIOACTIVITY 76Ge(2β-); measured decay products, Eβ, Iβ; deduced two-neutrino mode T1/2, effective nuclear matrix elements. Comparison with available data. The GERDA experiment was located underground at the Laboratori Nazionali del Gran Sasso (LNGS) of INFN, in Italy.

doi: 10.1103/PhysRevLett.131.142501
Citations: PlumX Metrics

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


2020AG06      J. High Energy Phys. 2020, 139 (2020)

M.Agostini, A.M.Bakalyarov, M.Balata, I.Barabanov, L.Baudis, C.Bauer, E.Bellotti, S.Belogurov, A.Bettini, L.Bezrukov, D.Borowicz, E.Bossio, V.Bothe, V.Brudanin, R.Brugnera, A.Caldwell, C.Cattadori, A.Chernogorov, T.Comellato, V.D'Andrea, E.V.Demidova, N.Di Marco, A.Domula, E.Doroshkevich, V.Egorov, F.Fischer, M.Fomina, A.Gangapshev, A.Garfagnini, C.Gooch, P.Grabmayr, V.Gurentsov, K.Gusev, J.Hakenmuller, S.Hemmer, R.Hiller, W.Hofmann, M.Hult, L.V.Inzhechik, J.Janicsko Csathy, J.Jochum, M.Junker, V.Kazalov, Y.Kermaidic, T.Kihm, I.V.Kirpichnikov, A.Klimenko, R.Kneissl, K.T.Knopfle, O.Kochetov, V.N.Kornoukhov, P.Krause, V.V.Kuzminov, M.Laubenstein, A.Lazzaro, M.Lindner, I.Lippi, A.Lubashevskiy, B.Lubsandorzhiev, G.Lutter, C.Macolino, B.Majorovits, W.Maneschg, M.Miloradovic, R.Mingazheva, M.Misiaszek, P.Moseev, I.Nemchenok, K.Panas, L.Pandola, K.Pelczar, L.Pertoldi, P.Piseri, A.Pullia, C.Ransom, S.Riboldi, N.Rumyantseva, C.Sada, F.Salamida, S.Schonert, J.Schreiner, M.Schutt, A.-K.Schutz, O.Schulz, M.Schwarz, B.Schwingenheuer, O.Selivanenko, E.Shevchik, M.Shirchenko, H.Simgen, A.Smolnikov, D.Stukov, L.Vanhoefer, A.A.Vasenko, A.Veresnikova, C.Vignoli, K.von Sturm, T.Wester, C.Wiesinger, M.Wojcik, E.Yanovich, B.Zatschler, I.Zhitnikov, S.V.Zhukov, D.Zinatulina, A.Zschocke, A.J.Zsigmond, K.Zuber, G.Zuzel, for the GERDA collaboration

Modeling of GERDA Phase II data

RADIOACTIVITY 76Ge(2β-); analyzed available data. 40,42K, 60Co, 232Th, 238U, 234Pa, 228Ac, 210Po, 212,214Bi, 206Tl; deduced background model, T1/2 sensitivity. The GERmanium Detector Array (Gerda) experiment at the Gran Sasso underground laboratory (LNGS) of INFN, Italy.

doi: 10.1007/JHEP03(2020)139
Citations: PlumX Metrics


1993MA50      Nucl.Phys. A565, 543 (1993)

G.Mairle, M.Seeger, H.Reinhardt, T.Kihm, K.T.Knopfle, C.L.Wen

The Distribution of Proton-Hole Strengths in the (2s, 1d)-Shell of 35Cl, 37Cl and 39Cl

NUCLEAR REACTIONS 36,38,40Ar(polarized d, 3He), E=52 MeV; measured σ(θ), iT11(θ). 35,37,39Cl deduced levels, J, π, spectroscopic factors, proton occupancies, single-particle energies, spreading widths. 39Cl deduced mass excess. Enriched 36,38Ar gas targets. DWBA analysis.

doi: 10.1016/0375-9474(93)90044-X
Citations: PlumX Metrics


1992SE03      Nucl.Phys. A539, 223 (1992)

M.Seeger, Th.Kihm, K.T.Knopfle, G.Mairle, U.Schmidt-Rohr

Study of Proton Hole States in 63Cu and 63Co (II). The γ-Decay of Proton Hole States

NUCLEAR REACTIONS 64Zn, 64Ni(d, 3He), E=31 MeV; measured (3He)γ-coin, DSA. 63Cu, 63Co deduced levels, γ-branching, T1/2. Enriched targets, Ge(Li) detectors. Phonon-hole model calculations.

doi: 10.1016/0375-9474(92)90268-O
Citations: PlumX Metrics


1991SE09      Nucl.Phys. A533, 1 (1991)

M.Seeger, Th.Kihm, K.T.Knopfle, G.Mairle, U.Schmidt-Rohr, J.Hebenstreit, D.Paul, P.von Rossen

Study of Proton-Hole States in 63Cu and 63Co (I). Spectroscopy of (d, 3He) Reactions at E(d) = 52 MeV

NUCLEAR REACTIONS 64Zn, 64Ni(d, 3He), (polarized d, 3He), E=52 MeV; measured σ(E(3He)), σ(θ), iT11(θ). 63Cu, 63Co deduced levels, J, π, spectroscopic factors. Enriched target. Parametrized 2s1/2 proton single-particle energies for 16 ≤ A ≤ 66.

doi: 10.1016/0375-9474(91)90817-P
Citations: PlumX Metrics


1990WE07      Nucl.Phys. A510, 1 (1990)

Th.Weber, R.D.Heil, U.Kneissl, W.Wilke, Th.Kihm, K.T.Knopfle, H.J.Emrich

(e, e'f) Coincidence Experiments on 235U and 238U

NUCLEAR REACTIONS 235,238U(e, e'F), E=78-183 MeV; measured σ(θ(e'), E, θ(fragment)), in-, out-of-plane fission fragment σ(θ), fragment time-of-flight differences. 235,238U deduced multipole strength distributions for giant E0, E1, E2, E3 resonances, fission characteristics.

doi: 10.1016/0375-9474(90)90286-U
Citations: PlumX Metrics


1989SP05      Phys.Rev.Lett. 63, 1574 (1989)

M.Spahn, Th.Kihm, K.T.Knopfle, J.Friedrich, N.Voegler, Ch.Schmitt, V.H.Walther, M.Unkelbach, H.M.Hofmann

Study of Charge Symmetry in 4He by Simultaneous 4He(e, e'p)3H and 4He(e, e'n)3He Measurements

NUCLEAR REACTIONS 4He(e, e'p), (e, e'n), E=183.4 MeV; measured σ(θ(e'), θ(p)), σ(θ(e'), θ(n)); deduced σ. 4He deduced no charge symmetry breaking in GDR region.

doi: 10.1103/PhysRevLett.63.1574
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1989WE01      Phys.Rev.Lett. 62, 129 (1989)

Th.Weber, R.D.Heil, U.Kneissl, W.Wilke, H.J.Emrich, Th.Kihm, K.T.Knopfle

Evidence for Different Mass Splits in Fission Decays of Giant Multipole Resonances from 235,238U(e, e'f) Reactions

NUCLEAR REACTIONS 235,238U(e, e'F), E=185 MeV; measured fission (fragment)(fragment)-coin. 235,238U deduced giant multipole resonance fission decay features, Γ(S)/Γ(A).

doi: 10.1103/PhysRevLett.62.129
Citations: PlumX Metrics


1989WE02      Phys.Rev.Lett. 62, 690 (1989)

Th.Weber, U.Kneissl, Th.Kihm, K.T.Knopfle

Weber et al. Reply

doi: 10.1103/PhysRevLett.62.690
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1989WE12      Nucl.Phys. A502, 279c (1989)

Th.Weber, W.Wilke, H.J.Emrich, R.D.Heil, Th.Kihm, U.Kneissl, K.T.Knopfle, U.Seemann, F.Steiper, H.Stroher

Evidence for Different Fission Fragment Mass Asymmetries for Specific Nuclear Excitations Studied in (e, e'F) and (γ, F) Reactions

NUCLEAR REACTIONS 236U(e, e'F), E not given; measured fission fragment σ(θ). 235,238U(e, e'F), E=185 MeV; measured fission fragment spectra; deduced symmetric, asymmetric fission yield ratios, excitation multipolarity role.

doi: 10.1016/0375-9474(89)90668-4
Citations: PlumX Metrics


1988DO12      Z.Phys. A331, 107 (1988)

B.S.Dolbilkin, R.L.Kondratiev, V.P.Lisin, Sh.Khan, Th.Kihm, K.T.Knopfle, H.J.Schulz, Chenlin Wen, J.Friedrich

Direct Decay of the Giant Dipole Resonance in 58,60Ni and 64Zn from (e, e'c) Experiments

NUCLEAR REACTIONS 58,60Ni, 64Zn(e, e'p), (e, e'α), E=137.2 MeV; measured e'(particle)-coin spectra. 59,57Co, 63Cu deduced level population strengths.


1988HE16      Z.Phys. A331, 365 (1988)

J.Hesselbarth, S.Khan, Th.Kihm, K.T.Knopfle

Forward-Backward Asymmetries in the Direct Breakup of 6Li

NUCLEAR REACTIONS 208Pb(6Li, dα), E=60 MeV; measured σ(θ(6Li'), E(αd)); deduced projectile breakup features.


1988KH04      Nucl.Phys. A481, 253 (1988)

S.Khan, G.Mairle, K.T.Knopfle, Th.Kihm, L.-K.Pao, P.Grabmayr, G.J.Wagner, L.Friedrich

Hole-Strength Distributions from the 34S(d(pol), 3He)33P and 34S(d(pol), t)33S Reactions

NUCLEAR REACTIONS 34S(polarized d, 3He), (polarized d, t), E=52 MeV; measured σ(θ), iT11(θ); deduced systematics of single particle states for A=28-40. 33P, 33S deduced levels, J, π, T, spectroscopic factors, occupation numbers summed (S+), (S-) Gamow-Teller strength. Enriched target.

doi: 10.1016/0375-9474(88)90496-4
Citations: PlumX Metrics


1988WE18      Phys.Lett. 215B, 469 (1988)

Th.Weber, R.D.Heil, U.Kneissl, W.Wilke, H.J.Emrich, Th.Kihm, K.T.Knopfle

Near Barrier Fission Channels (J(π), K) in 238U for Spins J(π) = 0+, 1-, and 2+ from (e, e'f) Angular Correlation Measurements

NUCLEAR REACTIONS 238U(e, e'F), E=185 MeV; measured fission (fragment)(fragment)(θ), in-plane, out-of-plane; deduced partial fission channel σ. 238U levels deduced fission barriers.

doi: 10.1016/0370-2693(88)91343-3
Citations: PlumX Metrics


1987NU01      Nucl.Phys. A465, 365 (1987)

J.Nurzynski, T.Kihm, K.T.Knopfle, G.Mairle, H.Clement

Reorientation Effects for 52 MeV Vector Polarized Deuterons

NUCLEAR REACTIONS 20,22Ne, 26Mg, 28Si, 32,34S, 36,40Ar(polarized d, d), (polarized d, d'), E=52 MeV; measured σ(θ), iT11(θ); deduced optical model parameters. 20,22Ne, 26Mg, 28Si, 32,34S, 36,40Ar levels deduced β2. Natural 28Si, 32S, 40Ar targets, 20,22Ne, 26Mg, 34S, 36Ar enriched targets.

doi: 10.1016/0375-9474(87)90353-8
Citations: PlumX Metrics


1987WE09      Phys.Rev.Lett. 59, 2028 (1987)

Th.Weber, R.D.Heil, U.Kneissl, W.Pecho, W.Wilke, H.J.Emrich, Th.Kihm, K.T.Knopfle

Multipole Strength Distributions and Form Factors for E1, E2/E0, and E3 from 238U(e, e'f) Coincidence Experiments

NUCLEAR REACTIONS 238U(e, e'F), E=78, 183, 124 MeV; measured fission (fragment)(fragment)-coin. 238U deduced multipole strength distributions, form factors.

doi: 10.1103/PhysRevLett.59.2028
Citations: PlumX Metrics


1986KI09      Phys.Rev.Lett. 56, 2789 (1986)

Th.Kihm, K.T.Knopfle, H.Riedesel, P.Voruganti, H.J.Emrich, G.Fricke, R.Neuhausen, R.K.M.Schneider

E1 and E2-E0 Form Factors and Strength Distributions from 28Si(e, e'p) and 28Si(e, e'α) Coincidence Scattering

NUCLEAR REACTIONS 28Si(e, e'p), (e, e'α), E=183.5 MeV; measured e'p-, e'α-coin, σ(E(e')). 28Si deduced form factors, giant resonances, multipole transition strength distribution.

doi: 10.1103/PhysRevLett.56.2789
Citations: PlumX Metrics


1986PF01      Nucl.Phys. A455, 381 (1986)

A.Pfeiffer, G.Mairle, K.T.Knopfle, T.Kihm, G.Seegert, P.Grabmayr, G.J.Wagner, V.Bechtold, L.Friedrich

Study of the (d(pol), 3He) Reaction on 84Kr and 86Kr and the Lowest Moments of the Proton Strength Distributions in the Zr Region

NUCLEAR REACTIONS 84,86Kr(polarized d, 3He), E=52 MeV; measured σ(θ), iT11(θ). 83,85Br levels deduced J, π. 84,86Kr, 86,88Sr, 90,92,94,96Zr, 92,94,96,98,100Mo; analyzed data; deduced single particle energy, spreading width systematics.

doi: 10.1016/0375-9474(86)90313-1
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF0827.


1985KH04      Phys.Lett. 156B, 155 (1985)

S.Khan, Th.Kihm, K.T.Knopfle, G.Mairle, V.Bechtold, L.Friedrich

The Mass of 35P and Spin-Parity Assignments for Excited 35P States

NUCLEAR REACTIONS 36S(d, 3He), (polarized d, 3He), E=52 MeV; measured σ(E(3He)), σ(θ), iT11(θ). 35P deduced mass excess, levels, J, π, C2S.

doi: 10.1016/0370-2693(85)91499-6
Citations: PlumX Metrics


1984KI11      Z.Phys. A318, 205 (1984)

T.Kihm, G.Mairle, P.Grabmayr, K.T.Knopfle, G.J.Wagner, V.Bechtold, L.Friedrich

Spins and Parities of Hole States in 25Na and 25Mg

NUCLEAR REACTIONS 26Mg(polarized d, 3He), (d, 3He), (d, t), E=52 MeV; measured σ(θ), σ(E(3He)), σ(Et). 25Na deduced levels, J, π, C2S. 25Mg deduced IAS, J, π, S. Local, zero-range DWBA analysis.

doi: 10.1007/BF01413470
Citations: PlumX Metrics


1984SE13      J.Phys.(Paris), Colloq.C4, 85 (1984); See 1984Se21

G.Seegert, A.Pfeiffer, P.Grabmayr, T.Kihm, K.T.Knopfle, G.Mairle, G.J.Wagner, V.Bechtold, L.Friedrich

Study of Deeply-Bound Hole States in the Zr-Region via the (d(pol), 3He) Reaction


1984SE21      J.Phys.(Paris), Colloq.C-4, 85 (1984)

G.Seegert, A.Pfeiffer, P.Grabmayr, T.Kihm, K.T.Knopfle, G.Mairle, G.J.Wagner, V.Bechtold, L.Friedrich

Study of Deeply-Bound Hole States in the Zr-Region via the (d(pol), 3He) Reaction

NUCLEAR REACTIONS 86Kr, 90,92Zr, 92Mo(polarized d, 3He), E=52 MeV; measured σ(E(3He), θ(3He)), σ(θ(3He)). 86Kr, 90,92Zr, 92Mo deduced 1f7/2 hole state centroid energies, average Γ, spectroscopic factors. 85Br deduced 1f7/2 strength distribution.


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