References quoted in the ENSDF dataset: 157TB ADOPTED LEVELS, GAMMAS

30 references found.

Clicking on a keynumber will list datasets that reference the given article.


1963IW04

J.Phys.Soc.Japan 18, 315 (1963)

S.Iwata, I.Fujiwara, T.Nishi, S.Goda, M.Tabushi, T.Shigematsu

The Half-Life of Tb157

NUCLEAR STRUCTURE 157Tb; measured not abstracted; deduced nuclear properties.


1964FU03

Nucl.Phys. 50, 346 (1964)

I.Fujiwara, S.Iwata, T.Nishi, S.Goda, M.Tabushi, T.Shigematsu

Decay of Tb157

NUCLEAR STRUCTURE 157Tb; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0029-5582(64)90215-9


1964GR14

Zh.Eksperim. i Teor.Fiz. 46, 1138 (1964); Soviet Phys. JETP 19, 770 (1964)

E.P.Grigorev

Half Life of Tb157

NUCLEAR STRUCTURE 157Tb; measured not abstracted; deduced nuclear properties.


1966ME06

Nucl.Phys. 80, 74 (1966)

W.Meiling, F.Stary

Nanosekunden-Lebensdauermessungen beim Zerfall von 155Eu, 157Eu und 157Dy

RADIOACTIVITY 155Eu[from 154Sm(n, γβ)], 157Eu[from 154Sm(α, p)], 157Dy[from 155Gd(α, 2n)]; measured βγ-, Xγ-delay. 155Gd, 157Gd, 157Tb levels deduced T1/2. Enriched targets.

doi: 10.1016/0029-5582(66)90826-1


1967HA12

Phys.Letters 24B, 232 (1967)

U.Hauser, G.Knissel

E1 transition Probabilities Between Corresponding States in 155Tb, 157Tb and Their Neighbouring Odd Proton Nuclei

NUCLEAR STRUCTURE 155Dy, 157Dy; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0370-2693(67)90471-6


1967KO17

Izv.Akad.Nauk SSSR, Ser.Fiz. 31, 133 (1967); Bull.Acad.Sci.USSR, Phys.Ser. 31, 125 (1968)

A.Kokes, J.Zvolsky

On the Probabilities of Transitions Between the 5/2- (532) and 3/2+ (411) States of 159Tb, 157Tb, 155Tb and 155Eu

NUCLEAR STRUCTURE 155Sm, 155Dy, 159Gd, 157Dy; measured not abstracted; deduced nuclear properties.


1967MA33

Nucl.Phys. A103, 481 (1967)

S.G.Malmskog, A.Marelius, S.Wahlborn

The ΔK=1, E1 transitions in Odd-Mass Isotopes of Tb and Eu

RADIOACTIVITY 155,157Dy [from Tb(p, xn)], 159,161Gd [from Gd(n, γ)]; measured γce-, K-Auger-ce, β--ce-delays. 155,157,159,161Tb levels deduced T1/2, B(λ).

doi: 10.1016/0375-9474(67)90917-7


1968EA04

Phys.Rev. 170, 1083 (1968)

W.C.Easley, J.A.Barclay, D.A.Shirley

Nuclear Moments of Tb157, Tb158, and Tb160 by Electron Paramagnetic Resonance and Nuclear Alignment

NUCLEAR STRUCTURE 160Tb, 158Tb, 157Tb; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.170.1083


1971SOZW

JINR-E4-6055 (1971)

V.G.Soloviev, S.I.Fedotov

Non-Rotational States of Odd Z Deformed Nuclei in the Region 153 < A < 177

NUCLEAR STRUCTURE 153Eu, 155,157,159,161Tb, 159,161,163Ho, 165,167,171Tm, 169,173Lu, 177Ta; calculated levels, B(E2), configurations. Superfluid model.


1972AF03

JINR-P6-6426 (1972)

V.P.Afanasiev, I.I.Gromova, N.A.Lebedev, V.A.Morozov, T.M.Muminov, H.Fuia, A.B.Khalikulov, F.S.Khamraev

Measurement of Excited State Life-Times in Neutron-Deficient Nuclei of 165Er, 163Er, 157Tb, 153Gd, 151Gd and 135La

NUCLEAR REACTIONS 135Ba, 151,153Eu, 157Gd, 163,165Ho(p, nγ), E=660 MeV; measured ceγ-delay. 135La, 151,153Gd, 157Tb, 163,165Er deduced T1/2.


1972SO12

Izv.Akad.Nauk SSSR, Ser.Fiz. 36, 706 (1972); Bull.Acad.Sci.USSR, Phys.Ser. 36, 637 (1973)

V.G.Solovev, S.I.Fedotov

Nonrotational States in Odd-Z Deformed Nuclei with 153 < A < 177

NUCLEAR STRUCTURE 153Eu, 155,157,159,161Tb, 159,161,163Ho, 165,167,171Tm, 169,173,175Lu, 177Ta; calculated levels, J, K, π, B(E2).


1973GA29

Fiz.Elem.Chastits At.Yadra 4, 357 (1973); Sov.J.Particles Nucl. 4, 148 (1974)

F.A.Gareev, S.P.Ivanova, V.G.Solovev, S.I.Fedotov

Single-Particle Energies and Wave Functions of the Woods-Saxon Potential and Nonrotational States of Odd Nuclei in the Range 150 < A < 190

NUCLEAR STRUCTURE A=151-189; 153,155Sm, 155,157,159,161Gd, 157,159,161,163,165Dy, 163,165,167,169Er, 159,161,163,165Ho, 165,167,169Tm; calculated levels, J, π.


1973WI02

Nucl.Phys. A199, 1 (1973)

G.Winter, L.Funke, P.Kemnitz, H.Sodan

E1 Interband Transitions between Rotational Bands in Odd-Proton Nuclei

NUCLEAR STRUCTURE 161,163Ho, 167Tm, 171,173Lu rotational states analyzed E1/E2 branching; deduced B(E1).

doi: 10.1016/0375-9474(73)90329-1


1973WI22

Fiz.Elem.Chastits At.Yadra 4, 895 (1973); Sov.J.Particles Nucl. 4, 365 (1974)

G.Winter, H.E.Sodan, K.H.Kaun, P.Kemnitz, L.Funke

Rotational States of Odd Nuclei in the Range 150 ≤ A ≤ 190

NUCLEAR STRUCTURE A=150-190; analyzed rotational states in odd nuclei.


1975JO01

Phys.Rev. C11, 269 (1975)

P.C.Joshi, P.C.Sood

Coriolis Perturbation Effects for K = 3/2 Rotational Bands in Odd-Proton Rare-Earth Nuclei

NUCLEAR STRUCTURE 153,155Eu, 155,157,159,161Tb, 161,163Ho, 169Tm; calculated Coriolis perturbation effects for rotational bands.

doi: 10.1103/PhysRevC.11.269


1975NI03

Nucl.Phys. A245, 376 (1975)

B.S.Nielsen, M.E.Bunker

Equilibrium Deformations and Excitation Energies for Non-Collective States in Odd-Z Rare-Earth Nuclei

NUCLEAR STRUCTURE 153,155Eu, 155,157,159,161Tb, 159,161,163,165Ho, 165,167,169,171Tm, 169,171,173,175,177Lu, 177,179,181,183Ta, 181,183,185,187Re; calculated levels, equilibrium deformation parameters.

doi: 10.1016/0375-9474(75)90616-8


1978AL14

Izv.Akad.Nauk SSSR, Ser.Fiz. 42, 704 (1978); Bull.Acad.Sci.USSR, Phys.Ser. 42, No.4, 14 (1978)

B.A.Alikov, M.I.Baznat, F.R.Mai, M.M.Malikov, T.M.Muminov, V.V.Pashkevich

Analysis of the Properties of Odd-Even Isotopes of Terbium with A = 149, 151, 153, 155, and 157

NUCLEAR STRUCTURE 149,151,153,155,157Tb; calculated levels, J, K, π, δ, multipolarity, B(λ).


1979KEZV

ZFK-385, p.47 (1979)

P.Kemnitz, G.Winter, L.Funke, J.Doring, E.Will, F.Stary, S.Elfstrom, S.A.Hjorth, A.Johnson, Th.Lindblad

Der Obergang von Deformierten zu Sparischen Kernen in der Reihe der Tb-Isotope

NUCLEAR STRUCTURE 149,151,153,155,157Tb, 148,150,152,154,156Gd; calculated yrast levels; deduced transition from deformed to spherical nuclei. Core-particle coupling models.


1983BE42

Nucl.Phys. A408, 87 (1983)

G.J.Beyer, A.De Rujula, R.-D.Von Dincklage, H.A.Gustafsson, P.G.Hansen, P.Hoff, B.Jonson, H.L.Ravn, K.Riisager

The Q-Value of 157Tb

RADIOACTIVITY 157Tb(EC) [from Ta(p, X), E=600 MeV, mass, chemical separation]; measured X-rays, Auger electrons, internal bremsstrahlung; deduced T1/2, Q. 157Gd deduced EC-branching ratio to excited state, subshell capture ratios. Natural target, Si(Li), high-purity Ge detectors, gas proportional detectors.

doi: 10.1016/0375-9474(83)90350-0


1985ALZO

Program and Theses, Proc.35th Ann.Conf.Nuc.Spectrosc.Struct.At.Nuclei, Leningrad, p.121 (1985)

B.A.Alikov, W.Andrejtscheff, Kh.N.Badalov, G.I.Lizurei, T.M.Muminov, V.O.Nesterenko, I.A.Sharonov

Investigations of Electric Multipole Transitions in Odd Rare-Earth Elements Region

NUCLEAR STRUCTURE 155Eu, 157Tb, 163Dy, 165Er, 165Tm; calculated B(E1), B(E2), wave functions. Quasiparticle-phonon model.


1990AL36

Z.Phys. A337, 367 (1990)

G.D.Alkhazov, A.E.Barzakh, V.P.Denisov, V.S.Ivanov, I.Ya.Chubukov, V.S.Letokhov, V.I.Mishin, S.K.Sekatsky, V.N.Fedoseyev

Electromagnetic Moments and Nuclear Charge Radii for Neutron-Deficient Tb Isotopes and the Deformation Jump Near Z = 64, N = 90

RADIOACTIVITY 147,148,149,150,151,152,153,155,157Tb; measured hfs, optical isotope shift; deduced μ, quadrupole moment, changes in rms charge radii, deformation jump.

NUCLEAR MOMENTS 159Tb; measured hfs, optical isotope shift; deduced μ, quadrupole moment, changes in rms charge radii, deformation jump.


1990HA37

Nucl.Phys. A520, 297c (1990)

I.Hamamoto

What Do We Know About Triaxial Nuclear Shape ( Question )

NUCLEAR STRUCTURE 161,163,165,167,169Yb, 157Ho, 159Tm, 161,163,165,167Lu; compiled data analyses; deduced shape features.

doi: 10.1016/0375-9474(90)91155-K


1990NA14

Nucl.Phys. A512, 61 (1990)

W.Nazarewicz, M.A.Riley, J.D.Garrett

Equilibrium Deformations and Excitation Energies of Single-Quasiproton Band Heads of Rare-Earth Nuclei

NUCLEAR STRUCTURE 148,150,152,154,156,158,160Sm, 150,152,154,156,158,160,162,164,166Gd, 152,154,156,158,160,162,164,166,168Dy, 154,156,158,160,162,164,166,168,170Er, 154,156,158,160,162,164,166,168,170,172,174,176,178,180Yb, 158,160,162,164,166,168,170,172,174,176,178,180,182Hf, 164,166,168,170,172,174,176,178,180,182,184,186,188W, 170,172,174,176,178,180,182,184,186,188,190,192,194Os, 151,153,155,157,159,161Eu, 153,155,157,159,161,163,165Tb, 153,155,157,159,161,163,165,167,169,171Ho, 157,159,161,163,165,167,169,171,173Tm, 161,163,165,167,169,171,173,175,177Lu, 167,169,171,173,175,177,179,181,183,185Ta, 173,175,177,179,181,183,185,187,189Re; calculated equilibrium deformations. Shell correction method, average Woods-Saxon potential, monopole pairing residual interaction.

doi: 10.1016/0375-9474(90)90004-6


1993NE10

Fiz.Elem.Chastits At.Yadra 24, 1517 (1993); Sov.J.Part.Nucl 24, 640 (1993)

V.O.Nesterenko

Microscopic Description of Low-Lying States in Deformed Nuclei with Rotation-Vibration Coupling

NUCLEAR STRUCTURE 166Er; calculated levels, B(λ), reduced E2 matrix elements. 153,155Eu, 155,157Tb; calculated Coriolis matrix elements, levels, reduced matrix elements. 166,168Ho; calculated β- transition log ft. 166Ho; calculated levels. Extended quasiparticle-phonon model.


1997AD08

Z.Phys. A358, 47 (1997)

J.Adam, Z.A.Saleh, V.G.Kalinnikov, A.N.Priemyshev, V.S.Pronskikh, V.I.Stegailov, Yu.A.Vaganov, P.Chaloun, J.Frana, M.B.Yuldashev

Beta Decay of 157Dy

RADIOACTIVITY 157Dy(EC) [from Ta(p, X), E=680 MeV]; measured Eγ, I(ce), γγ-coin; deduced log ft. 157Tb deduced levels, configurations, B(lambda), γ multipolarity. Alaga rules.

doi: 10.1007/s002180050275


2008KI07

Nucl.Instrum.Methods Phys.Res. A589, 202 (2008)

T.Kibedi, T.W.Burrows, M.B.Trzhaskovskaya, P.M.Davidson, C.W.Nestor, Jr.

Evaluation of theoretical conversion coefficients using BrIcc

COMPILATION Z=5-110; compiled and evaluated ICC data. BrICC database.

doi: 10.1016/j.nima.2008.02.051


2011STZZ

INDC(NDS)-0594 (2011)

N.J.Stone

Table of nuclear magnetic dipole and electric quadrupole moments

COMPILATION Z=1-99, N=1-254; compiled experimental data on nuclear magnetic and electrical quadrupole moments.


2012WA38

Chin.Phys.C 36, 1603 (2012)

M.Wang, G.Audi, A.H.Wapstra, F.G.Kondev, M.MacCormick, X.Xu, B.Pfeiffer

The AME2012 atomic mass evaluation (II). Tables, graphs and references

COMPILATION A=1-295; compiled, evaluated atomic mass data.


2013AN02

At.Data Nucl.Data Tables 99, 69 (2013)

I.Angeli, K.P.Marinova

Table of experimental nuclear ground state charge radii: An update

COMPILATION Z=0-96; compiled nuclear radii, rms nuclear charge radii.

doi: 10.1016/j.adt.2011.12.006


2017WA10

Chin.Phys.C 41, 030003 (2017)

M.Wang, G.Audi, F.G.Kondev, W.J.Huang, S.Naimi, X.Xu

The AME2016 atomic mass evaluation (II). Tables, graphs and references

ATOMIC MASSES A=1-295; compiled, evaluated atomic masses data.

doi: 10.1088/1674-1137/41/3/030003