Isomeric ratio for the iπ = 8+ yrast state in 96Pd produced in the relativistic fragmentation of 107Ag

S. Myalski, M. Kmiecik, A. Maj, P. H. Regan, A. B. Garnsworthy, S. Pietri, D. Rudolph, Zs Podolyák, S. J. Steer, F. Becker, P. Bednarczyk, J. Gerl, M. Górska, H. Grawe, I. Kojouharov, H. Schaffner, H. J. Wollersheim, W. Prokopowicz, J. Grebosz, G. BenzoniB. Blank, C. Brandau, A. M. Bruce, L. Cáceres, F. Cameras, W. N. Catford, I. J. Cullen, Zs. S. Dombrádi, P. Doornenbal, E. Estevez, H. Geissel, W. Gelletly, A. Heinz, R. Hoischen, G. Ilie, G. A. Jones, A. Jungclaus, A. Kelic, F. G. Kondev, T. Kurtukian-Nieto, N. Kurz, S. Lalkovski, Z. Liu, F. Montes, M. Pfützner, T. Saito, T. Shizuma, A. J. Simons, S. Schwertel, S. Tachenov, P. M. Walker, E. Werner-Malento, O. Wieland

Research output: Contribution to journalArticle

6 Citations (Scopus)

Abstract

We report on the preliminary results from a study of the decay of the Iπ = 8+ T1/2 = 2μs isomer in 96Pd performed as part of the Stopped-Beam RISING campaign within the Rare Isotope Investigation at GSI (RISING). The 96Pd ions were produced following the projectile fragmentation of a 750 MeV per nucleon 107Ag primary beam. The reaction products were separated and identified by the in-flight method using the GSI Fragment Separator. The residues of interest were stopped in a perspex stopper surrounded by an array of 15, seven-element germanium Cluster detectors. One of the goals of the current work is to investigate the population of high-spin states produced projectile fragmentation reactions using isomeric ratio measurements to infer information on the angular momentum population distribution. In this short contribution the method and results of determining the isomeric ratio for the Iπ = 8+ microsecond isomer in 96Pd nucleus are presented.

Original languageEnglish
Pages (from-to)1277-1282
Number of pages6
JournalActa Physica Polonica B
Volume38
Issue number4
Publication statusPublished - Apr 2007

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yrast state
projectiles
fragmentation
isomers
isotopes
Perspex (trademark)
separators
reaction products
germanium
angular momentum
fragments
flight
nuclei
detectors
decay
ions

ASJC Scopus subject areas

  • Physics and Astronomy(all)

Cite this

Myalski, S., Kmiecik, M., Maj, A., Regan, P. H., Garnsworthy, A. B., Pietri, S., ... Wieland, O. (2007). Isomeric ratio for the iπ = 8+ yrast state in 96Pd produced in the relativistic fragmentation of 107Ag. Acta Physica Polonica B, 38(4), 1277-1282.

Isomeric ratio for the iπ = 8+ yrast state in 96Pd produced in the relativistic fragmentation of 107Ag. / Myalski, S.; Kmiecik, M.; Maj, A.; Regan, P. H.; Garnsworthy, A. B.; Pietri, S.; Rudolph, D.; Podolyák, Zs; Steer, S. J.; Becker, F.; Bednarczyk, P.; Gerl, J.; Górska, M.; Grawe, H.; Kojouharov, I.; Schaffner, H.; Wollersheim, H. J.; Prokopowicz, W.; Grebosz, J.; Benzoni, G.; Blank, B.; Brandau, C.; Bruce, A. M.; Cáceres, L.; Cameras, F.; Catford, W. N.; Cullen, I. J.; Dombrádi, Zs. S.; Doornenbal, P.; Estevez, E.; Geissel, H.; Gelletly, W.; Heinz, A.; Hoischen, R.; Ilie, G.; Jones, G. A.; Jungclaus, A.; Kelic, A.; Kondev, F. G.; Kurtukian-Nieto, T.; Kurz, N.; Lalkovski, S.; Liu, Z.; Montes, F.; Pfützner, M.; Saito, T.; Shizuma, T.; Simons, A. J.; Schwertel, S.; Tachenov, S.; Walker, P. M.; Werner-Malento, E.; Wieland, O.

In: Acta Physica Polonica B, Vol. 38, No. 4, 04.2007, p. 1277-1282.

Research output: Contribution to journalArticle

Myalski, S, Kmiecik, M, Maj, A, Regan, PH, Garnsworthy, AB, Pietri, S, Rudolph, D, Podolyák, Z, Steer, SJ, Becker, F, Bednarczyk, P, Gerl, J, Górska, M, Grawe, H, Kojouharov, I, Schaffner, H, Wollersheim, HJ, Prokopowicz, W, Grebosz, J, Benzoni, G, Blank, B, Brandau, C, Bruce, AM, Cáceres, L, Cameras, F, Catford, WN, Cullen, IJ, Dombrádi, ZS, Doornenbal, P, Estevez, E, Geissel, H, Gelletly, W, Heinz, A, Hoischen, R, Ilie, G, Jones, GA, Jungclaus, A, Kelic, A, Kondev, FG, Kurtukian-Nieto, T, Kurz, N, Lalkovski, S, Liu, Z, Montes, F, Pfützner, M, Saito, T, Shizuma, T, Simons, AJ, Schwertel, S, Tachenov, S, Walker, PM, Werner-Malento, E & Wieland, O 2007, 'Isomeric ratio for the iπ = 8+ yrast state in 96Pd produced in the relativistic fragmentation of 107Ag', Acta Physica Polonica B, vol. 38, no. 4, pp. 1277-1282.
Myalski S, Kmiecik M, Maj A, Regan PH, Garnsworthy AB, Pietri S et al. Isomeric ratio for the iπ = 8+ yrast state in 96Pd produced in the relativistic fragmentation of 107Ag. Acta Physica Polonica B. 2007 Apr;38(4):1277-1282.
Myalski, S. ; Kmiecik, M. ; Maj, A. ; Regan, P. H. ; Garnsworthy, A. B. ; Pietri, S. ; Rudolph, D. ; Podolyák, Zs ; Steer, S. J. ; Becker, F. ; Bednarczyk, P. ; Gerl, J. ; Górska, M. ; Grawe, H. ; Kojouharov, I. ; Schaffner, H. ; Wollersheim, H. J. ; Prokopowicz, W. ; Grebosz, J. ; Benzoni, G. ; Blank, B. ; Brandau, C. ; Bruce, A. M. ; Cáceres, L. ; Cameras, F. ; Catford, W. N. ; Cullen, I. J. ; Dombrádi, Zs. S. ; Doornenbal, P. ; Estevez, E. ; Geissel, H. ; Gelletly, W. ; Heinz, A. ; Hoischen, R. ; Ilie, G. ; Jones, G. A. ; Jungclaus, A. ; Kelic, A. ; Kondev, F. G. ; Kurtukian-Nieto, T. ; Kurz, N. ; Lalkovski, S. ; Liu, Z. ; Montes, F. ; Pfützner, M. ; Saito, T. ; Shizuma, T. ; Simons, A. J. ; Schwertel, S. ; Tachenov, S. ; Walker, P. M. ; Werner-Malento, E. ; Wieland, O. / Isomeric ratio for the iπ = 8+ yrast state in 96Pd produced in the relativistic fragmentation of 107Ag. In: Acta Physica Polonica B. 2007 ; Vol. 38, No. 4. pp. 1277-1282.
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abstract = "We report on the preliminary results from a study of the decay of the Iπ = 8+ T1/2 = 2μs isomer in 96Pd performed as part of the Stopped-Beam RISING campaign within the Rare Isotope Investigation at GSI (RISING). The 96Pd ions were produced following the projectile fragmentation of a 750 MeV per nucleon 107Ag primary beam. The reaction products were separated and identified by the in-flight method using the GSI Fragment Separator. The residues of interest were stopped in a perspex stopper surrounded by an array of 15, seven-element germanium Cluster detectors. One of the goals of the current work is to investigate the population of high-spin states produced projectile fragmentation reactions using isomeric ratio measurements to infer information on the angular momentum population distribution. In this short contribution the method and results of determining the isomeric ratio for the Iπ = 8+ microsecond isomer in 96Pd nucleus are presented.",
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AU - Myalski, S.

AU - Kmiecik, M.

AU - Maj, A.

AU - Regan, P. H.

AU - Garnsworthy, A. B.

AU - Pietri, S.

AU - Rudolph, D.

AU - Podolyák, Zs

AU - Steer, S. J.

AU - Becker, F.

AU - Bednarczyk, P.

AU - Gerl, J.

AU - Górska, M.

AU - Grawe, H.

AU - Kojouharov, I.

AU - Schaffner, H.

AU - Wollersheim, H. J.

AU - Prokopowicz, W.

AU - Grebosz, J.

AU - Benzoni, G.

AU - Blank, B.

AU - Brandau, C.

AU - Bruce, A. M.

AU - Cáceres, L.

AU - Cameras, F.

AU - Catford, W. N.

AU - Cullen, I. J.

AU - Dombrádi, Zs. S.

AU - Doornenbal, P.

AU - Estevez, E.

AU - Geissel, H.

AU - Gelletly, W.

AU - Heinz, A.

AU - Hoischen, R.

AU - Ilie, G.

AU - Jones, G. A.

AU - Jungclaus, A.

AU - Kelic, A.

AU - Kondev, F. G.

AU - Kurtukian-Nieto, T.

AU - Kurz, N.

AU - Lalkovski, S.

AU - Liu, Z.

AU - Montes, F.

AU - Pfützner, M.

AU - Saito, T.

AU - Shizuma, T.

AU - Simons, A. J.

AU - Schwertel, S.

AU - Tachenov, S.

AU - Walker, P. M.

AU - Werner-Malento, E.

AU - Wieland, O.

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AB - We report on the preliminary results from a study of the decay of the Iπ = 8+ T1/2 = 2μs isomer in 96Pd performed as part of the Stopped-Beam RISING campaign within the Rare Isotope Investigation at GSI (RISING). The 96Pd ions were produced following the projectile fragmentation of a 750 MeV per nucleon 107Ag primary beam. The reaction products were separated and identified by the in-flight method using the GSI Fragment Separator. The residues of interest were stopped in a perspex stopper surrounded by an array of 15, seven-element germanium Cluster detectors. One of the goals of the current work is to investigate the population of high-spin states produced projectile fragmentation reactions using isomeric ratio measurements to infer information on the angular momentum population distribution. In this short contribution the method and results of determining the isomeric ratio for the Iπ = 8+ microsecond isomer in 96Pd nucleus are presented.

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