Zobrazeno 1 - 10
of 99
pro vyhledávání: '"Shneidman, T.M."'
Autor:
Isaev, A.V., Mukhin, R.S., Andreev, A.V., Asfari, Z., Chelnokov, M.L., Chepigin, V.I., Devaraja, H.M., Dorvaux, O., Gall, B., Hauschild, K., Izosimov, I.N., Kuznetsova, A.A., Lopez-Martens, A., Malyshev, O.N., Popeko, A.G., Popov, Yu.A., Rahmatinejad, A., Sailaubekov, B., Shneidman, T.M., Sokol, E.A., Svirikhin, A.I., Tezekbayeva, M.S., Yeremin, A.V., Zamyatin, N.I.
Publikováno v:
Physics Letters
An experimental study of $^{256}$Rf spontaneous fission following the fusion reaction of $^{50}$Ti+$^{208}$Pb was performed using the velocity filter SHELS of the Flerov laboratory at JINR. The average number of neutrons of ν‾=4.30±0.17 and varia
Akademický článek
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Autor:
Butler, P.A., Gaffney, L.P., Abrahams, K., Bowry, M., Cederkäll, J., Chupp, T., De Angelis, Angelis, De Witte, Witte, Garrett, P.E., Goldkuhle, A., Henrich, C., Illana, A., Johnston, K., Joss, D.T., Keatings, J.M., Kelly, N.A., Komorowska, M., Konki, J., Kröll, T., Lozano, M., Singh, B. S. Nara, O'Donnell, D., Ojala, J., Page, R.D., Pedersen, Line Gaard, Raison, C., Reiter, P., Rodriguez, J.A., Rosiak, D., Rothe, S., Scheck, M., Seidlitz, M., Shneidman, T.M., Siebeck, B., Sinclair, J., Smith, J.F., Stryjczyk, M., Van Duppen, Duppen, Viñals, S., Virtanen, V., Wrzosek-Lipska, K., Warr, N., Zielińska, M.
Publikováno v:
Butler, P.A. Gaffney, L.P. Abrahams, K. Bowry, M. Cederkäll, J. Chupp, T. De Angelis, Angelis De Witte, Witte Garrett, P.E. Goldkuhle, A. Henrich, C. Illana, A. Johnston, K. Joss, D.T. Keatings, J.M. Kelly, N.A. Komorowska, M. Konki, J. Kröll, T. Lozano, M. Singh, B. S. Nara O'Donnell, D. Ojala, J. Page, R.D. Pedersen, Line Gaard Raison, C. Reiter, P. Rodriguez, J.A. Rosiak, D. Rothe, S. Scheck, M. Seidlitz, M. Shneidman, T.M. Siebeck, B. Sinclair, J. Smith, J.F. Stryjczyk, M. Van Duppen, Duppen Viñals, S. Virtanen, V. Wrzosek-Lipska, K. Warr, N. Zielińska, M. . Coulomb excitation of Rn 222. Physical Review C. 2022, 105(2)
Physical Review C
Physical Review C
Externí odkaz:
http://hdl.handle.net/10852/100836
Autor:
Spagnoletti, P., Butler, P.A., Gaffney, L.P., Abrahams, K., Bowry, M., Cederkäll, J., Chupp, T., de Angelis, G., de Witte, H., Garrett, P.E., Goldkuhle, A., Henrich, C., Illana, A., Johnston, K., Joss, D.T., Keatings, J.M., Kelly, N.A., Komorowska, M., Konki, J., Kröll, T., Lozano, M., Singh, B.S. Nara, O'Donnell, D., Ojala, J., Page, R.D., Pedersen, L.G., Raison, C., Reiter, P., Rodriguez, J.A., Rosiak, D., Rothe, S., Scheck, M., Seidlitz, M., Shneidman, T.M., Siebeck, B., Sinclair, J., Smith, J.F., Stryjczyk, M., van Duppen, P., Viñals, S., Virtanen, V., Wrzosek-Lipska, K., Warr, N., Zielińska, M.
Publikováno v:
Phys.Rev.C
Phys.Rev.C, 2022, 105 (2), pp.024323. ⟨10.1103/PhysRevC.105.024323⟩
Phys.Rev.C, 2022, 105 (2), pp.024323. ⟨10.1103/PhysRevC.105.024323⟩
International audience; The nature of quadrupole and octupole collectivity in $^{222}$Rn was investigated by determining the electric-quadrupole (E2) and octupole (E3) matrix elements using subbarrier, multistep Coulomb excitation. The radioactive $^
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::06239082bfe4b4688984cf5c06b76cbb
http://urn.fi/URN:NBN:fi:jyu-202203011744
http://urn.fi/URN:NBN:fi:jyu-202203011744
Akademický článek
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Autor:
von Tresckow, Ma., Rudigier, M., Shneidman, T.M., Kröll, Th., Boromiza, M., Clisu, C., Costache, C., Filipescu, D., Florea, N.M., Gheorghe, I., Gladnishki, K., Ionescu, A., Kocheva, D., Lică, R., Mărginean, N., Mărginean, R., Mashtakov, K.R., Mihai, C., Mihai, R.E., Negret, A., Nita, C.R., Olacel, A., Oprea, A., Pascu, S., Rainovski, G., Sava, T., Scheck, M., Spagnoletti, P., Sotty, C., Stan, L., Stiru, I., Toma, S., Turturică, A., Ujeniuc, S.
Publikováno v:
Physics Letters
Half-lives of the low-lying yrast states of $^{212}$Po have been measured using the delayed coincidence fast-timing method. We report on the first measurement of the 41+ half-life, as well as a new measurement of the 61+ half-life with improved accur
Publikováno v:
EPJ Web of Conferences, Vol 107, p 03009 (2016)
We developed a cluster model which allows to take into account both shape deformation parameters and cluster degrees of freedom. The model is based on the assumption that the wave function of nucleus can be treated as a superposition of a mononucleus
Externí odkaz:
https://doaj.org/article/96bb495b440245d59adb53144197dfcb
Autor:
Butler, P.A., Gaffney, L.P., Spagnoletti, P., Abrahams, K., Bowry, M., Cederkäll, J., Angelis, G. de, Witte, H. de, Garrett, P.E., Goldkuhle, A., Henrich, C., Illana, A., Johnston, K., Joss, D.T., Keatings, J.M., Kelly, N.A., Komorowska, M., Konki, J., Kröll, T., Lozano, M., Nara Singh, B.S., O'Donnell, D., Ojala, J., Page, R.D., Pedersen, L.G., Raison, C., Reiter, P., Rodriguez, J.A., Rosiak, D., Rothe, S., Scheck, M., Seidlitz, M., Shneidman, T.M., Siebeck, B., Sinclair, J., Smith, J.F., Stryjczyk, M., Van Duppen, P., Víñals, S., Virtanen, V., Warr, N., Wrzosek-Lipska, K., Zielinska, M.
Publikováno v:
Digital.CSIC. Repositorio Institucional del CSIC
instname
instname
6 pags., 5 figs., 1 tab.
There is sparse direct experimental evidence that atomic nuclei can exhibit stable "pear" shapes arising from strong octupole correlations. In order to investigate the nature of octupole collectivity in radium isotopes,
There is sparse direct experimental evidence that atomic nuclei can exhibit stable "pear" shapes arising from strong octupole correlations. In order to investigate the nature of octupole collectivity in radium isotopes,
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::d4caac1d96c18554bb4a7b849c16ce79
http://hdl.handle.net/10261/227639
http://hdl.handle.net/10261/227639
Autor:
Butler, Peter A., Gaffney, LP, Spagnoletti, P., Abrahams, K., Bowry, M., Cederkall, Joakim, De Angelis, G., De Witte, H., Garrett, P.E., Goldkuhle, A., Henrich, C., Illana, A., Johnston, K., Joss, D.T., Keatings, J.M., Kelly, N.A., Komorowska, M., Konki, J., Kröll, Th, Lozano, M., Nara Singh, B.S., O'Donnell, D., Ojala, J., Page, R.D., Pedersen, Line Gaard, Raison, C., Reiter, Peter, Rodriguez, J.A., Rosiak, D., Rothe, S., Scheck, Marcus, Seidlitz, M., Shneidman, T.M., Siebeck, B., Sinclair, J., Smith, J. F., Stryjczyk, M., Van Duppen, P, Vinals, S., Virtanen, V., Warr, N., Wrzosek-Lipska, Katarzyna, Zielinska, Magdalena
Publikováno v:
Butler, Peter A. Gaffney, LP Spagnoletti, P. Abrahams, K. Bowry, M. Cederkall, Joakim De Angelis, G. De Witte, H. Garrett, P.E. Goldkuhle, A. Henrich, C. Illana, A. Johnston, K. Joss, D.T. Keatings, J.M. Kelly, N.A. Komorowska, M. Konki, J. Kröll, Th Lozano, M. Nara Singh, B.S. O'Donnell, D. Ojala, J. Page, R.D. Pedersen, Line Gaard Raison, C. Reiter, Peter Rodriguez, J.A. Rosiak, D. Rothe, S. Scheck, Marcus Seidlitz, M. Shneidman, T.M. Siebeck, B. Sinclair, J. Smith, J. F. Stryjczyk, M. Van Duppen, P Vinals, S. Virtanen, V. Warr, N. Wrzosek-Lipska, Katarzyna Zielinska, Magdalena . Evolution of Octupole Deformation in Radium Nuclei from Coulomb Excitation of Radioactive 222Ra and 228Ra Beams. Physical Review Letters. 2020, 124(4)
Physical Review Letters
Physical Review Letters
Externí odkaz:
http://hdl.handle.net/10852/83769
https://www.duo.uio.no/bitstream/handle/10852/83769/2/PhysRevLett.124.042503.pdf
https://www.duo.uio.no/bitstream/handle/10852/83769/2/PhysRevLett.124.042503.pdf
Autor:
Butler, P.A., Gaffney, L.P., Spagnoletti, P., Abrahams, K., Bowry, M., Cederkäll, J., De Angelis, G., De Witte, H., Garrett, P.E., Goldkuhle, A., Henrich, C., Illana, A., Johnston, K., Joss, D.T., Keatings, J.M., Kelly, N.A., Komorowska, M., Konki, J., Kröll, T., Lozano, M., Nara Singh, B.S., O'Donnell, D., Ojala, J., Page, R.D., Pedersen, L.G., Raison, C., Reiter, P., Rodriguez, J.A., Rosiak, D., Rothe, S., Scheck, M., Seidlitz, M., Shneidman, T.M., Siebeck, B., Sinclair, J., Smith, J.F., Stryjczyk, M., Van Duppen, P., Vinals, S., Virtanen, V., Warr, N., Wrzosek-Lipska, K., Zielińska, M.
Publikováno v:
Phys.Rev.Lett.
Phys.Rev.Lett., 2020, 124 (4), pp.042503. ⟨10.1103/PhysRevLett.124.042503⟩
Phys.Rev.Lett., 2020, 124 (4), pp.042503. ⟨10.1103/PhysRevLett.124.042503⟩
There is sparse direct experimental evidence that atomic nuclei can exhibit stable pear shapes arising from strong octupole correlations. In order to investigate the nature of octupole collectivity in radium isotopes, electric octupole ($E3$) matrix
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::56c47109705f95fc265cd96be95123bc
https://hal.archives-ouvertes.fr/hal-02475235
https://hal.archives-ouvertes.fr/hal-02475235