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Band termination spectroscopy in 157Er

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Band termination spectroscopy in 157Er. / Gale, S.J.; Simpson, J.; Riley, M.A. et al.
In: Journal of Physics G: Nuclear and Particle Physics, Vol. 21, No. 2, 1995, p. 193-213.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Gale, SJ, Simpson, J, Riley, MA, Sharpey-Schafer, JF, Paul, ES, Bentley, MA, Bruce, AM, Chapman, R, Clark, RM, Clarke, S, Copnell, J, Cullen, DM, Fallon, P, Fitzpatrick, A, Forsyth, PD, Freeman, SJ, Jones, PM, Joyce, MJ, Liden, F, Lisle, JC, MacChiavellio, AO, Smith, AG, Smith, J, Sweeney, J, Thompson, DM, Warburton, S, Wilson, JN & Ragnarsson, I 1995, 'Band termination spectroscopy in 157Er', Journal of Physics G: Nuclear and Particle Physics, vol. 21, no. 2, pp. 193-213. https://doi.org/10.1088/0954-3899/21/2/007

APA

Gale, S. J., Simpson, J., Riley, M. A., Sharpey-Schafer, J. F., Paul, E. S., Bentley, M. A., Bruce, A. M., Chapman, R., Clark, R. M., Clarke, S., Copnell, J., Cullen, D. M., Fallon, P., Fitzpatrick, A., Forsyth, P. D., Freeman, S. J., Jones, P. M., Joyce, M. J., Liden, F., ... Ragnarsson, I. (1995). Band termination spectroscopy in 157Er. Journal of Physics G: Nuclear and Particle Physics, 21(2), 193-213. https://doi.org/10.1088/0954-3899/21/2/007

Vancouver

Gale SJ, Simpson J, Riley MA, Sharpey-Schafer JF, Paul ES, Bentley MA et al. Band termination spectroscopy in 157Er. Journal of Physics G: Nuclear and Particle Physics. 1995;21(2):193-213. doi: 10.1088/0954-3899/21/2/007

Author

Gale, S.J. ; Simpson, J. ; Riley, M.A. et al. / Band termination spectroscopy in 157Er. In: Journal of Physics G: Nuclear and Particle Physics. 1995 ; Vol. 21, No. 2. pp. 193-213.

Bibtex

@article{6fd3459941c745c3b068acd80ae0320b,
title = "Band termination spectroscopy in 157Er",
abstract = "The level scheme of 157Er has been extended from a spin region where the nucleus behaves as a prolate rotor to a region where the spin is produced by the alignment of all or most of the available valence nucleons along the symmetry axis of a weakly deformed oblate shape. The level scheme was established at high spin using up to four-fold gamma -ray coincidences detected in the Eurogam spectrometer following the reaction 114Cd(48Ca,5n)157Er at a bombarding energy of 210 MeV. Particularly favoured states have been established at IK=69/2+, 81/2+, 71/2+, 77/2-, 87-/2 and 89-/2. Specific single-particle configurations are assigned to these special states by comparison with cranked Nilsson-Strutinsky calculations. These states are related to structures observed in the neighbouring nuclei 158Er and 157Ho. These data provide the spectrum of single-particle states for the lowest lying valence orbitals above the 146Gd closed core.",
author = "S.J. Gale and J. Simpson and M.A. Riley and J.F. Sharpey-Schafer and E.S. Paul and M.A. Bentley and A.M. Bruce and R. Chapman and R.M. Clark and S. Clarke and J. Copnell and D.M. Cullen and P. Fallon and A. Fitzpatrick and P.D. Forsyth and S.J. Freeman and P.M. Jones and M.J. Joyce and F. Liden and J.C. Lisle and A.O. MacChiavellio and A.G. Smith and J. Smith and J. Sweeney and D.M. Thompson and S. Warburton and J.N. Wilson and I. Ragnarsson",
year = "1995",
doi = "10.1088/0954-3899/21/2/007",
language = "English",
volume = "21",
pages = "193--213",
journal = "Journal of Physics G: Nuclear and Particle Physics",
issn = "0954-3899",
publisher = "IOP Publishing Ltd.",
number = "2",

}

RIS

TY - JOUR

T1 - Band termination spectroscopy in 157Er

AU - Gale, S.J.

AU - Simpson, J.

AU - Riley, M.A.

AU - Sharpey-Schafer, J.F.

AU - Paul, E.S.

AU - Bentley, M.A.

AU - Bruce, A.M.

AU - Chapman, R.

AU - Clark, R.M.

AU - Clarke, S.

AU - Copnell, J.

AU - Cullen, D.M.

AU - Fallon, P.

AU - Fitzpatrick, A.

AU - Forsyth, P.D.

AU - Freeman, S.J.

AU - Jones, P.M.

AU - Joyce, M.J.

AU - Liden, F.

AU - Lisle, J.C.

AU - MacChiavellio, A.O.

AU - Smith, A.G.

AU - Smith, J.

AU - Sweeney, J.

AU - Thompson, D.M.

AU - Warburton, S.

AU - Wilson, J.N.

AU - Ragnarsson, I.

PY - 1995

Y1 - 1995

N2 - The level scheme of 157Er has been extended from a spin region where the nucleus behaves as a prolate rotor to a region where the spin is produced by the alignment of all or most of the available valence nucleons along the symmetry axis of a weakly deformed oblate shape. The level scheme was established at high spin using up to four-fold gamma -ray coincidences detected in the Eurogam spectrometer following the reaction 114Cd(48Ca,5n)157Er at a bombarding energy of 210 MeV. Particularly favoured states have been established at IK=69/2+, 81/2+, 71/2+, 77/2-, 87-/2 and 89-/2. Specific single-particle configurations are assigned to these special states by comparison with cranked Nilsson-Strutinsky calculations. These states are related to structures observed in the neighbouring nuclei 158Er and 157Ho. These data provide the spectrum of single-particle states for the lowest lying valence orbitals above the 146Gd closed core.

AB - The level scheme of 157Er has been extended from a spin region where the nucleus behaves as a prolate rotor to a region where the spin is produced by the alignment of all or most of the available valence nucleons along the symmetry axis of a weakly deformed oblate shape. The level scheme was established at high spin using up to four-fold gamma -ray coincidences detected in the Eurogam spectrometer following the reaction 114Cd(48Ca,5n)157Er at a bombarding energy of 210 MeV. Particularly favoured states have been established at IK=69/2+, 81/2+, 71/2+, 77/2-, 87-/2 and 89-/2. Specific single-particle configurations are assigned to these special states by comparison with cranked Nilsson-Strutinsky calculations. These states are related to structures observed in the neighbouring nuclei 158Er and 157Ho. These data provide the spectrum of single-particle states for the lowest lying valence orbitals above the 146Gd closed core.

U2 - 10.1088/0954-3899/21/2/007

DO - 10.1088/0954-3899/21/2/007

M3 - Journal article

VL - 21

SP - 193

EP - 213

JO - Journal of Physics G: Nuclear and Particle Physics

JF - Journal of Physics G: Nuclear and Particle Physics

SN - 0954-3899

IS - 2

ER -