Isomers and high-spin structures in the isotones and
Abstract
In this study, the high-spin structures and isomers of the N=81 isotones 135Xe and 137Ba are investigated after multinucleon-transfer (MNT) and fusion-evaporation reactions. Both nuclei are populated (i) in 136Xe +238U and (ii) 136Xe+208Pb MNT reactions employing the high-resolution Advanced Gamma Tracking Array (AGATA) coupled to the magnetic spectrometer PRISMA, (iii) in the 136Xe+198Pt MNT reaction employing the γ-ray array GAMMASPHERE in combination with the gas-detector array CHICO, and (iv) via a 11B+130Te fusion-evaporation reaction with the HORUS γ-ray array at the University of Cologne. The high-spin level schemesof 135Xe and 137Ba are considerably extended to higher energies. The 2058-keV (19/2-) state in 135Xe is identified as an isomer, closing a gap in the systematics along the N=81 isotones. Its half-life is measured to be 9.0(9) ns, corresponding to a reduced transition probability of B(E2,19/2-→15/2-)=0.52(6) W.u. The experimentally deduced reduced transition probabilities of the isomeric states are compared to shell-model predictions. Finally, latest shell-model calculations reproduce the experimental findings generally well and provide guidance to the interpretation of the new levels.
- Authors:
-
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- Universitat zu Koln (Germany). Institut fur Kernphysik
- Universita di Padova (Italy). Dipartimento di Fisica e Astronomia; Laboratori Nazionali di Legnaro (Italy). Istituto Nazionale di Fisica Nucleare
- Laboratori Nazionali di Legnaro (Italy). Istituto Nazionale di Fisica Nucleare
- Univ. of Birmingham (United Kingdom)
- Saitama University, Saitama City (Japan)
- Istituto Nazionale di Fisica Nucleare, Sezione di Padova (Italy)
- Univ. of Surrey, Guildford (United Kingdom)
- Universita di Milano and INFN Sezione di Milan (Italy)
- CEA Saclay, Service de Physique Nucleaire (France)
- Univ. of Manchester (United Kingdom)
- University of the West of Scotland, Paisley (United Kingdom)
- Univ. of Rochester, NY (United States)
- Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
- CSIC-Universidad de Valencia (Spain)
- Uppsala Univ. (Sweden)
- Univ. of Oslo (Norway); Universite Paris-Saclay (France); Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
- Universita di Padova (Italy); Sezione di Padova (Italy)
- Instituto de Estructura de la Materia, CSIC, Madrid (Spain)
- Universite Paris-Saclay (France)
- University of the West of Scotland (United Kingdom); Universita di Padova (Italy); Sezione di Padova (Italy)
- Ruder Boskovic Institute (Croatia)
- Laboratori Nazionali di Legnaro (Italy).
- Universita di Torino and INFN (Italy)
- Univ. of Surrey, Guildford (United Kingdom) ; National Physical Laboratory, Teddington (United Kingdom)
- Laboratori Nazionali di Legnaro (Italy)
- Copenhagen Univ. (Denmark)
- University of the West of Scotland (United Kingdom)
- Universite de Lyon (France)
- Henryk Niewodniczanski Institute of Nuclear Physics PAN (Poland)
- CCLRC Daresbury Laboratory, Warrington (United Kingdom)
- Publication Date:
- Research Org.:
- Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
- Sponsoring Org.:
- USDOE Office of Science (SC)
- OSTI Identifier:
- 1423613
- Grant/Contract Number:
- AC02-05CH11231
- Resource Type:
- Accepted Manuscript
- Journal Name:
- Physical Review C
- Additional Journal Information:
- Journal Volume: 95; Journal Issue: 2; Journal ID: ISSN 2469-9985
- Publisher:
- American Physical Society (APS)
- Country of Publication:
- United States
- Language:
- English
- Subject:
- 73 NUCLEAR PHYSICS AND RADIATION PHYSICS
Citation Formats
Vogt, A., Birkenbach, B., Reiter, P., Blazhev, A., Siciliano, M., Hadyńska-Klęk, K., Valiente-Dobón, J. J., Wheldon, C., Teruya, E., Yoshinaga, N., Arnswald, K., Bazzacco, D., Bowry, M., Bracco, A., Bruyneel, B., Chakrawarthy, R. S., Chapman, R., Cline, D., Corradi, L., Crespi, F. C. L., Cromaz, M., de Angelis, G., Eberth, J., Fallon, P., Farnea, E., Fioretto, E., Freeman, S. J., Fu, B., Gadea, A., Geibel, K., Gelletly, W., Gengelbach, A., Giaz, A., Görgen, A., Gottardo, A., Hayes, A. B., Hess, H., Hirsch, R., Hua, H., John, P. R., Jolie, J., Jungclaus, A., Kaya, L., Korten, W., Lee, I. Y., Leoni, S., Lewandowski, L., Liang, X., Lunardi, S., Macchiavelli, A. O., Menegazzo, R., Mengoni, D., Michelagnoli, C., Mijatović, T., Montagnoli, G., Montanari, D., Müller-Gatermann, C., Napoli, D., Pearson, C. J., Pellegri, L., Podolyák, Zs., Pollarolo, G., Pullia, A., Queiser, M., Radeck, F., Recchia, F., Regan, P. H., Rosiak, D., Saed-Samii, N., Şahin, E., Scarlassara, F., Schneiders, D., Seidlitz, M., Siebeck, B., Sletten, G., Smith, J. F., Söderström, P. -A., Stefanini, A. M., Steinbach, T., Stezowski, O., Szilner, S., Szpak, B., Teng, R., Ur, C., Vandone, V., Warner, D. D., Wiens, A., Wu, C. Y., and Zell, K. O. Isomers and high-spin structures in the N=81 isotones Xe135 and Ba137. United States: N. p., 2017.
Web. doi:10.1103/PhysRevC.95.024316.
Vogt, A., Birkenbach, B., Reiter, P., Blazhev, A., Siciliano, M., Hadyńska-Klęk, K., Valiente-Dobón, J. J., Wheldon, C., Teruya, E., Yoshinaga, N., Arnswald, K., Bazzacco, D., Bowry, M., Bracco, A., Bruyneel, B., Chakrawarthy, R. S., Chapman, R., Cline, D., Corradi, L., Crespi, F. C. L., Cromaz, M., de Angelis, G., Eberth, J., Fallon, P., Farnea, E., Fioretto, E., Freeman, S. J., Fu, B., Gadea, A., Geibel, K., Gelletly, W., Gengelbach, A., Giaz, A., Görgen, A., Gottardo, A., Hayes, A. B., Hess, H., Hirsch, R., Hua, H., John, P. R., Jolie, J., Jungclaus, A., Kaya, L., Korten, W., Lee, I. Y., Leoni, S., Lewandowski, L., Liang, X., Lunardi, S., Macchiavelli, A. O., Menegazzo, R., Mengoni, D., Michelagnoli, C., Mijatović, T., Montagnoli, G., Montanari, D., Müller-Gatermann, C., Napoli, D., Pearson, C. J., Pellegri, L., Podolyák, Zs., Pollarolo, G., Pullia, A., Queiser, M., Radeck, F., Recchia, F., Regan, P. H., Rosiak, D., Saed-Samii, N., Şahin, E., Scarlassara, F., Schneiders, D., Seidlitz, M., Siebeck, B., Sletten, G., Smith, J. F., Söderström, P. -A., Stefanini, A. M., Steinbach, T., Stezowski, O., Szilner, S., Szpak, B., Teng, R., Ur, C., Vandone, V., Warner, D. D., Wiens, A., Wu, C. Y., & Zell, K. O. Isomers and high-spin structures in the N=81 isotones Xe135 and Ba137. United States. https://doi.org/10.1103/PhysRevC.95.024316
Vogt, A., Birkenbach, B., Reiter, P., Blazhev, A., Siciliano, M., Hadyńska-Klęk, K., Valiente-Dobón, J. J., Wheldon, C., Teruya, E., Yoshinaga, N., Arnswald, K., Bazzacco, D., Bowry, M., Bracco, A., Bruyneel, B., Chakrawarthy, R. S., Chapman, R., Cline, D., Corradi, L., Crespi, F. C. L., Cromaz, M., de Angelis, G., Eberth, J., Fallon, P., Farnea, E., Fioretto, E., Freeman, S. J., Fu, B., Gadea, A., Geibel, K., Gelletly, W., Gengelbach, A., Giaz, A., Görgen, A., Gottardo, A., Hayes, A. B., Hess, H., Hirsch, R., Hua, H., John, P. R., Jolie, J., Jungclaus, A., Kaya, L., Korten, W., Lee, I. Y., Leoni, S., Lewandowski, L., Liang, X., Lunardi, S., Macchiavelli, A. O., Menegazzo, R., Mengoni, D., Michelagnoli, C., Mijatović, T., Montagnoli, G., Montanari, D., Müller-Gatermann, C., Napoli, D., Pearson, C. J., Pellegri, L., Podolyák, Zs., Pollarolo, G., Pullia, A., Queiser, M., Radeck, F., Recchia, F., Regan, P. H., Rosiak, D., Saed-Samii, N., Şahin, E., Scarlassara, F., Schneiders, D., Seidlitz, M., Siebeck, B., Sletten, G., Smith, J. F., Söderström, P. -A., Stefanini, A. M., Steinbach, T., Stezowski, O., Szilner, S., Szpak, B., Teng, R., Ur, C., Vandone, V., Warner, D. D., Wiens, A., Wu, C. Y., and Zell, K. O. Wed .
"Isomers and high-spin structures in the N=81 isotones Xe135 and Ba137". United States. https://doi.org/10.1103/PhysRevC.95.024316. https://www.osti.gov/servlets/purl/1423613.
@article{osti_1423613,
title = {Isomers and high-spin structures in the N=81 isotones Xe135 and Ba137},
author = {Vogt, A. and Birkenbach, B. and Reiter, P. and Blazhev, A. and Siciliano, M. and Hadyńska-Klęk, K. and Valiente-Dobón, J. J. and Wheldon, C. and Teruya, E. and Yoshinaga, N. and Arnswald, K. and Bazzacco, D. and Bowry, M. and Bracco, A. and Bruyneel, B. and Chakrawarthy, R. S. and Chapman, R. and Cline, D. and Corradi, L. and Crespi, F. C. L. and Cromaz, M. and de Angelis, G. and Eberth, J. and Fallon, P. and Farnea, E. and Fioretto, E. and Freeman, S. J. and Fu, B. and Gadea, A. and Geibel, K. and Gelletly, W. and Gengelbach, A. and Giaz, A. and Görgen, A. and Gottardo, A. and Hayes, A. B. and Hess, H. and Hirsch, R. and Hua, H. and John, P. R. and Jolie, J. and Jungclaus, A. and Kaya, L. and Korten, W. and Lee, I. Y. and Leoni, S. and Lewandowski, L. and Liang, X. and Lunardi, S. and Macchiavelli, A. O. and Menegazzo, R. and Mengoni, D. and Michelagnoli, C. and Mijatović, T. and Montagnoli, G. and Montanari, D. and Müller-Gatermann, C. and Napoli, D. and Pearson, C. J. and Pellegri, L. and Podolyák, Zs. and Pollarolo, G. and Pullia, A. and Queiser, M. and Radeck, F. and Recchia, F. and Regan, P. H. and Rosiak, D. and Saed-Samii, N. and Şahin, E. and Scarlassara, F. and Schneiders, D. and Seidlitz, M. and Siebeck, B. and Sletten, G. and Smith, J. F. and Söderström, P. -A. and Stefanini, A. M. and Steinbach, T. and Stezowski, O. and Szilner, S. and Szpak, B. and Teng, R. and Ur, C. and Vandone, V. and Warner, D. D. and Wiens, A. and Wu, C. Y. and Zell, K. O.},
abstractNote = {In this study, the high-spin structures and isomers of the N=81 isotones 135Xe and 137Ba are investigated after multinucleon-transfer (MNT) and fusion-evaporation reactions. Both nuclei are populated (i) in 136Xe +238U and (ii) 136Xe+208Pb MNT reactions employing the high-resolution Advanced Gamma Tracking Array (AGATA) coupled to the magnetic spectrometer PRISMA, (iii) in the 136Xe+198Pt MNT reaction employing the γ-ray array GAMMASPHERE in combination with the gas-detector array CHICO, and (iv) via a 11B+130Te fusion-evaporation reaction with the HORUS γ-ray array at the University of Cologne. The high-spin level schemesof 135Xe and 137Ba are considerably extended to higher energies. The 2058-keV (19/2-) state in 135Xe is identified as an isomer, closing a gap in the systematics along the N=81 isotones. Its half-life is measured to be 9.0(9) ns, corresponding to a reduced transition probability of B(E2,19/2-→15/2-)=0.52(6) W.u. The experimentally deduced reduced transition probabilities of the isomeric states are compared to shell-model predictions. Finally, latest shell-model calculations reproduce the experimental findings generally well and provide guidance to the interpretation of the new levels.},
doi = {10.1103/PhysRevC.95.024316},
journal = {Physical Review C},
number = 2,
volume = 95,
place = {United States},
year = {Wed Feb 15 00:00:00 EST 2017},
month = {Wed Feb 15 00:00:00 EST 2017}
}
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