Nuclear structure of Te130 from inelastic neutron scattering and shell model analysis

[1]  N. Moggi,et al.  The CUORE Detector and Results , 2020 .

[2]  J. Allmond,et al.  Emerging nuclear collectivity in 124−130Te , 2020, EPJ Web of Conferences.

[3]  S. Khosa,et al.  Microscopic study of evolution of shape change across even-even mass chain of tellurium isotopes using relativistic Hartree-Bogoliubov model , 2019, Nuclear Physics A.

[4]  S. Dell’Oro,et al.  Neutrinoless Double Beta Decay Experiments With TeO2 Low-Temperature Detectors , 2019, Front. Phys..

[5]  P. Garrett,et al.  Critical insights into nuclear collectivity from complementary nuclear spectroscopic methods , 2018 .

[6]  J. Menendez,et al.  Status and future of nuclear matrix elements for neutrinoless double-beta decay: a review , 2016, Reports on progress in physics. Physical Society.

[7]  Ny,et al.  Current Status and Future Prospects of the SNO+ Experiment , 2015, 1508.05759.

[8]  A. Stuchbery Gyromagnetic ratios of excited states and nuclear structure near 132Sn , 2014 .

[9]  A. Stuchbery Nuclear moments and nuclear structure near 132Sn , 2014 .

[10]  B. A. Brown,et al.  The Shell-Model Code NuShellX@MSU , 2014 .

[11]  D. Cline,et al.  Experimental and Theoretical Investigations of Quadrupole Collective Degrees of Freedom in 104Ru , 2005 .

[12]  Yu. L. Khazov,et al.  Nuclear Data Sheets for A=132 , 2005 .

[13]  A. Sonzogni Nuclear Data Sheets for A = 134 , 2004 .

[14]  Balraj Singh Nuclear Data Sheets for A = 130 , 2001 .

[15]  P. Garrett,et al.  Nuclear Structure Studies With the Inelastic Neutron Scattering Reaction and Gamma-Ray Detection , 2000, Journal of research of the National Institute of Standards and Technology.

[16]  G. Molnár,et al.  Analysis of Doppler-shift attenuation measurements performed with accelerator-produced monoenergetic neutrons , 1996 .

[17]  R. Gatenby,et al.  Level scheme and mixed-symmetry states of 134Ba from in-beam (n, n′γ) measurements , 1992 .

[18]  A. Arima,et al.  COLLECTIVE NUCLEAR STATES AS SYMMETRIC COUPLINGS OF PROTON AND NEUTRON EXCITATIONS , 1977 .

[19]  A. Kleinfeld,et al.  Reorientation effect measurements of 122Te and 130Te , 1976 .

[20]  C. Rangacharyulu,et al.  Excitation of 3−1, 5−1 and 7−1 states in Te isotopes A = 120, 122; 124, 126, 128 WITH (p, t) reactions , 1976 .

[21]  K. B. Winterbon An analytic theory of Doppler-shift attenuation , 1975 .

[22]  M. Matoba,et al.  Elastic and inelastic scattering of 51.9 MeV protons by doubly even tellurium nuclei , 1975 .

[23]  O. Shahal,et al.  Properties of nuclear levels photoexcited by neutron-capture γ-rays of Ti and Cu , 1974 .

[24]  P. Carlé,et al.  Beta decay studies in the vicinity of 13250Sn82: Excited states in 13051Sb, 13052Te and 13252Te , 1974 .

[25]  M. Matoba,et al.  Strong L=5 transition in Te(p, p′) reactions , 1973 .

[26]  P. Carlé,et al.  Properties of 13052Te78 as observed in the 40 min β-decay of 130Sb , 1972 .

[27]  A. Kerek Two-quasiparticle states in 122, 124, 126Te. the level systematics in doubly even tellurium nuclei , 1971 .

[28]  V. Lopac Semi-microscopic description of even tellurium isotopes , 1970 .

[29]  A. Ginsburg,et al.  Study of elastic and inelastic scattering of protons from 128Te and 130Te at isobaric analogue resonances , 1970 .

[30]  J. Cookson,et al.  Collective levels in the even isotopes of Cd and Te , 1965 .

[31]  D. Cline Nuclear Shapes Studied by Coulomb Excitation , 1985 .