Zobrazeno 1 - 10
of 193
pro vyhledávání: '"Sanetullaev, A."'
Autor:
Cruz, S., Wimmer, K., Bhattacharjee, S. S., Bender, P. C., Hackman, G., Krücken, R., Ames, F., Andreoiu, C., Austin, R. A. E., Bancroft, C. S., Braid, R., Bruhn, T., Catford, W. N., Cheeseman, A., Chester, A., Cross, D. S., Diget, C. Aa., Drake, T., Garnsworthy, A. B., Kanungo, R., Knapton, A., Korten, W., Kuhn, K., Lassen, J., Laxdal, R., Marchetto, M., Matta, A., Miller, D., Moukaddam, M., Orr, N. A., Sachmpazidi, N., Sanetullaev, A., Svensson, C. E., Terpstra, N., Unsworth, C., Voss, P. J.
Background: Neutron-rich nuclei around neutron number N = 60 show a dramatic shape transition from spherical ground states to prolate deformation in 98Sr and heavier nuclei. Purpose: The purpose of this study is to investigate the single-particle str
Externí odkaz:
http://arxiv.org/abs/2008.07634
Autor:
Cruz, S., Wimmer, K., Bender, P. C., Krücken, R., Hackman, G., Ames, F., Andreoiu, C., Austin, R. A. E., Bancroft, C. S., Braid, R., Bruhn, T., Catford, W. N., Cheeseman, A., Chester, A., Cross, D. S., Diget, C. Aa., Drake, T., Garnsworthy, A. B., Kanungo, R., Knapton, A., Korten, W., Kuhn, K., Lassen, J., Laxdal, R., Marchetto, M., Matta, A., Miller, D., Moukaddam, M., Orr, N. A., Sachmpazidi, N., Sanetullaev, A., Svensson, C. E., Terpstra, N., Unsworth, C., Voss, P. J.
The region around neutron number N = 60 in the neutron-rich Sr and Zr nuclei is one of the most dramatic examples of a ground state shape transition from (near) spherical below N = 60 to strongly deformed shapes in the heavier isotopes. The single-pa
Externí odkaz:
http://arxiv.org/abs/1911.00670
Autor:
Morfouace, P., Tsang, C. Y., Zhang, Y., Lynch, W. G., Tsang, M. B., Coupland, D. D. S, Youngs, M., Chajecki, Z., Famiano, M. A., Ghosh, T. K., Jhang, G., Lee, Jenny, Liu, H., Sanetullaev, A., Showalter, R., Winkelbauer, J.
Efficiency corrected single ratios of neutron and proton spectra in central $^{112}$Sn+$^{112}$Sn and $^{124}$Sn+$^{124}$Sn collisions at 120 MeV/u are combined with double ratios to provide constraints on the density and momentum dependencies of the
Externí odkaz:
http://arxiv.org/abs/1904.12471
Autor:
Cruz, S., Bender, P. C., Krücken, R., Wimmer, K., Ames, F., Andreoiu, C., Austin, R. A. E., Bancroft, C. S., Braid, R., Bruhn, T., Catford, W. N., Cheeseman, A., Chester, A., Cross, D. S., Diget, C. Aa., Drake, T., Garnsworthy, A. B., Hackman, G., Kanungo, R., Knapton, A., Korten, W., Kuhn, K., Lassen, J., Laxdal, R., Marchetto, M., Matta, A., Miller, D., Moukaddam, M., Orr, N. A., Sachmpazidi, N., Sanetullaev, A., Svensson, C. E., Terpstra, N., Unsworth, C., Voss, P. J.
The low energy excited $0_{2,3}^+$ states in $^{96}$Sr are amongst the most prominent examples of shape coexistence across the nuclear landscape. In this work, the neutron $[2s_{1/2}]^2$ content of the $0_{1,2,3}^+$ states in $^{96}$Sr was determined
Externí odkaz:
http://arxiv.org/abs/1809.05899
Autor:
Manfredi, J., Lee, Jenny, Lynch, W. G., Niu, C. Y., Tsang, M. B., Anderson, C., Barney, J., Brown, K. W., Chajecki, Z., Chan, K. P., Chen, G., Estee, J., Li, Z., Pruitt, C., Rogers, A. M., Sanetullaev, A., Setiawan, H., Showalter, R., Tsang, C. Y., Winkelbauer, J. R., Xiao, Z., Xu, Z.
In this work, two particular properties of the position-sensitive, thick silicon detectors (known as the "E" detectors) in the High Resolution Array (HiRA) are investigated: the thickness of the dead layer on the front of the detector, and the overal
Externí odkaz:
http://arxiv.org/abs/1801.06181
Autor:
Kumar, A., Kanungo, R., Calci, A., Navratil, P., Sanetullaev, A., Alcorta, M., Bildstein, V., Christian, G., Davids, B., Dohet-Eraly, J., Fallis, J., Gallant, A. T., Hackman, G., Hadinia, B., Hupin, G., Ishimoto, S., Krücken, R., Laffoley, A. T., Lighthall, J., Miller, D., Quaglioni, S., Randhawa, J. S., Rand, E. T., Rojas, A., Roth, R., Shotter, A., Tanaka, J., Tanihata, I., Unsworth, C.
How does nature hold together protons and neutrons to form the wide variety of complex nuclei in the universe? Describing many-nucleon systems from the fundamental theory of quantum chromodynamics has been the greatest challenge in answering this que
Externí odkaz:
http://arxiv.org/abs/1705.05409
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Autor:
Kirsebom, O. S., Bender, P., Cheeseman, A., Christian, G., Churchman, R., Cross, D. S., Davids, B., Evitts, L. J., Fallis, J., Galinski, N., Garnsworthy, A. B., Hackman, G., Lighthall, J., Ketelhut, S., Machule, P., Miller, D., Nobs, C. R., Pearson, C. J., Rajabali, M. M., Radich, A. J., Rojas, A., Ruiz, C., Sanetullaev, A., Unsworth, C. D., Wrede, C.
Publikováno v:
Phys. Rev. C 93, 025802 (2016)
Several lifetimes in 23Mg have been determined for the first time using the Doppler-shift attenuation method. A Monte Carlo simulation code has been written to model the gamma-ray line shape. An upper limit of 12 fs at the 95% C.L. has been obtained
Externí odkaz:
http://arxiv.org/abs/1508.07188
Autor:
Wimmer, K., Bazin, D., Gade, A., Tostevin, J. A., Baugher, T., Chajecki, Z., Coupland, D., Famiano, M. A., Ghosh, T. K., Howard, G. F. Grinyer M. E., Kilburn, M., Lynch, W. G., Manning, B., Meierbachtol, K., Quarterman, P., Ratkiewicz, A., Sanetullaev, A., Showalter, R. H., Stroberg, S. R., Tsang, M. B., Weisshaar, D., Winkelbauer, J., Winkler, R., Youngs, M.
The 9Be(28Mg,27Na) one-proton removal reaction with a large proton separation energy of Sp(28Mg)=16.79 MeV is studied at intermediate beam energy. Coincidences of the bound 27Na residues with protons and other light charged particles are measured. Th
Externí odkaz:
http://arxiv.org/abs/1412.2305
Autor:
Coupland, D. D. S., Youngs, M., Lynch, W. G., Tsang, M. B., Chajecki, Z., Zhang, Y. X., Famiano, M. A., Ghosh, T. K., Giacherio, B., Kilburn, M. A., Lee, Jenny, Lu, F., Russotto, P., Sanetullaev, A., Showalter, R. H., Verde, G., Winkelbauer, J.
Publikováno v:
Phys. Rev. C 94, 011601 (2016)
We probe the momentum dependence of the isovector mean-field potential by comparing the energy spectra of neutrons and protons emitted in $^{112}$Sn+$^{112}$Sn and $^{124}$Sn+$^{124}$Sn collisions at incident energies of E/A=50 and 120 MeV. We achiev
Externí odkaz:
http://arxiv.org/abs/1406.4546