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This is a resource paper concerning enhancement of observable time-reversal breaking effects by nuclear structure, aimed at AMO experimentalists.
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1983
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1984
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1984
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1987
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1988
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1988
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“Nuclear Radii and Unstable Isotopes,” E. W. Otten, in “Treatise on Heavy Ion Science,” edited by D. A. Bromley, Vol. 8 (Springer US, Boston, MA, 1989) pp. 598
1989
Earlier work this paper cites.
“Octupole Deformation in the Odd-Odd Nucleus 152Eu,” R.K. Sheline and P.C. Sood, Progress of Theoretical Physics, 81
1989
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P.A. Butler and W. Nazarewicz, “Intrinsic Dipole Moments in reflection-asymmetric nuclei,” Nuclear Physics A522
1991
Earlier work this paper cites.
“The nuclear structure of 223
1992
Earlier work this paper cites.
A critical correction to a wrong tabulation of a 223
1992
Earlier work this paper cites.
“Octupole Shapes in Nuclei,” Irshad Ahmad and Peter A. Butler, Annu. Rev. Nucl. Part. Sci. 1993 43
1993
Earlier work this paper cites.
“Opposite-parity bands in 153
1994
Earlier work this paper cites.
“Experimental and theoretical study of the nuclear structure of 223
1995
Earlier work this paper cites.
“Intrinsic reflection asymmetry in atomic nuclei,” P.A. Butler and W. Nazarewicz, Rev. Mod. Phys. 68
1996
Earlier work this paper cites.
“Enhanced T-odd, P-odd electromagnetic moments in reflection asymmetric nuclei” V. Spevak, N. Auerbach, and V. V. Flambaum, Phys. Rev. C 56
1997
Earlier work this paper cites.
“Efficient Collection of 221
1997
Cited alongside, same era.
“Search for stable octupole deformation in 225
1997
Cited alongside, same era.
“‘Lifetimes of states in the opposite-parity bands of 153 Eu: Recoil-distance measurements following Coulomb excitation,” J.F. Smith, M.W. Simon, R.W. Ibbotson, P.A. Butler, A. Aprahamian, A.M. Bruce, D. Cline, M. Devlin, G. D. Jones, P. M. Jones, and C. Y. Wu , Phys. Rev. C 58
1998
Cited alongside, same era.
“Nuclear octupole correlations and the enhancement of atomic time-reversal violation,” J. Engel, J. L. Friar, and A. C. Hayes, Phys. Rev. C 61, 035502 (2000)
2000
Cited alongside, same era.
“Reduced Electric-Octupole Transition Probabilities, B(E3; 0 1 + → 3 1 − {}_{1}^{+}\rightarrow 3_{1}^{-} )— An Update,” T. Kibedi and R.H. Spear, Atomic Data and Nuclear Data Tables 80
2002
Cited alongside, same era.
“The observation of vibrating pear-shapes in radon nuclei,” P.A. Butler, L.P. Gaffney, P. Spagnoletti, J. Konki, M. Scheck, J.F. Smith, K. Abrahams, M. Bowry, J. Cederkäll, T. Chupp, G. de Angelis, H. De Witte, P.E. Garrett, A. Goldkuhle, C. Henrich, A. Illana, K. Johnston, D.T. Joss, J.M. Keatings, N.A. Kelly, M. Komorowska, T. Kröll, M. Lozano, B.S. Nara Singh, D. O’Donnell, J. Ojala, R.D. Page, L.G. Pedersen, C. Raison, P. Reiter, J.A. Rodriguez, D. Rosiak, S. Rothe, T.M. Shneidman, B. Siebeck, M. Seidlitz, J. Sinclair, M. Stryjczyk, P. Van Duppen, S. Vinals, V. Virtanen, N. Warr, K. Wrzosek-Lipska, and M. Zielinska, Nat. Commun. 10
2019
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“Electric dipole moments of atoms and molecules produced by enhanced nuclear Schiff moments,” V.V. Flambaum and V.A. Dzuba, Phys. Rev. A 101
2020
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“Enhanced nuclear Schiff moment in stable and metastable nuclei,” V.V. Flambaum and H. Feldmeier, Phys. Rev. C 101
2020
Later among the works it cites.
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“The nuclear structure of 229
2002
Cited alongside, same era.
“Enhancement of nuclear Schiff moments and time-reversal violation in atoms due to soft nuclear octupole vibrations,” V.V. Flambaum and V.G. Zelevinsky, Phys. Rev. C 68
2003
Cited alongside, same era.
“Nuclear Schiff moment in nuclei with soft octupole and quadrupole vibrations,” N. Auerbach, V. F. Dmitriev, V. V. Flambaum, A. Lisetskiy, R. A. Seńkov, and V. G. Zelevinsky, Phys. Rev. C 74, 025502 (2006);
2006
Cited alongside, same era.
“Nuclear Structure of 229
2006
Cited alongside, same era.
“Studies of pear-shaped nuclei using accelerated radioactive beams,” L.P. Gaffney et al., Nature 497
2013
Cited alongside, same era.
“Laser spectroscopy of francium isotopes at the borders of the region of reflection asymmetry,” I. Budin c ˇ \check{\rm c} evi c ´ \acute{\rm c} , J. Billowes, M. L. Bissell, T. E. Cocolios, R. P. de Groote, S. De Schepper, V. N. Fedosseev, K. T. Flanagan, S. Franchoo, R. F. Garcia Ruiz, H. Heylen, K. M. Lynch, B. A. Marsh, G. Neyens, T. J. Procter, R. E. Rossel, S. Rothe, I. Strashnov, H. H. Stroke, and K. D. A. Wendt Phys. Rev. C 90
2014
Cited alongside, same era.
“Electron capture decay of 58-min 92 229 {}^{229}_{92} U and levels in 91 229 {}^{229}_{91} Pa,” I. Ahmad, R. R. Chasman, J. P. Greene, F. G. Kondev, and S. Zhu, Phys. Rev. C 92
2015
Cited alongside, same era.
2020
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“Electron Electric Dipole Moment Searches Using Clock Transitions in Ultracold Molecules,” Mohit Verma, Andrew M. Jayich, and Amar C. Vutha, Phys. Rev. Lett. 125
2020
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“Polyatomic molecules as quantum sensors for fundamental physics,” N.R. Hutzler, Quantum Science and Technology 5
2020
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“Landscape of pear-shaped even-even nuclei,” Yuchen Cao, S. E. Agbemava, A. V. Afanasjev, W. Nazarewicz, and E. Olsen Phys. Rev. C 102
2020
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“Direct measurement of the intrinsic electric dipole moment in pear-shaped thorium-228” M. M. R. Chishti, D. O’Donnell, G. Battaglia, M. Bowry, D. A. Jaroszynski, B. S. Nara Singh, M. Scheck, P. Spagnoletti, and J. F. Smith, Nature Physics 16
2020
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2021
Later among the works it cites.
“The Piezoaxionic Effect,” A. Arvanataki, A. Madden, K. Van Tilburg, arXiv:2122.11466 (2021)
2021
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“Charge radii in covariant density functional theory: A global view,” U. C. Perera, A. V. Afanasjev, and P. Ring, Phys. Rev. C 104
2021
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“The first experimental evidence for the (M1 + E2) mixed character of the 9.2 keV transition in 227
2021
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“Schiff moments of deformed nuclei,” O.P. Sushkov, Phys. Rev. C 110
2024
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J. Engel, “Nuclear Schiff moments and CP violation,” Annual Review Nuclear and Particle Science 75, 129 (2025)
2025
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2025
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“Nuclear Schiff Moment of the Fluorine Isotope 19
2026
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