S. Suchyta
Michigan State University
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Featured researches published by S. Suchyta.
Physical Review C | 2014
M. Pomorski; M. Pfützner; W. Dominik; R. Grzywacz; A. Stolz; T. Baumann; J. S. Berryman; H. Czyrkowski; R. Dabrowski; A. Fijałkowska; T. N. Ginter; J. Johnson; G. Kamiński; N. Larson; S. N. Liddick; M. Madurga; C. Mazzocchi; S. Mianowski; K. Miernik; D. Miller; S. V. Paulauskas; J. Pereira; K. Rykaczewski; S. Suchyta
Results of decay spectroscopy on nuclei in vicinity of the doubly magic 48Ni are presented. The measurements were performed with a Time Projection Chamber with optical readout which records tracks of ions and protons in the gaseous volume. Six decays of 48Ni including four events of two-proton ground-state radioactivity were recorded. An advanced reconstruction procedure yielded the 2p decay energy for 48Ni of Q2p = 1.29(4) MeV. In addition, the energy spectra of \b{eta}-delayed protons emitted in the decays of 44Cr and 46Fe, as well as half-lives and branching ratios were determined. The results were found to be consistent with the previous measurements made with Si detectors. A new proton line in the decay of 44Cr corresponding to the decay energy of 760 keV is reported. The first evidence for the \b{eta}2p decay of 46 Fe, based on one clear event, is shown.
Physical Review C | 2012
S. N. Liddick; B. Abromeit; A. Ayres; A. Bey; C. R. Bingham; M. Bolla; L. Cartegni; H. L. Crawford; I. G. Darby; R. Grzywacz; S. Ilyushkin; N. Larson; M. Madurga; D. Miller; S. Padgett; S. V. Paulauskas; M. M. Rajabali; K. Rykaczewski; S. Suchyta
The low-energy level structures for the neutron-rich Co isotopes at N = 39 and N = 41 are constructed following the beta decay of the respective even-even Fe isotopes. Spin and parity assignments of the lowest energy populated state in {sup 66}Co and {sup 68}Co are consistent with a 1{sup +} spin and parity assignment and attributed to the coupling of the deformed proton configurations identified in {sup 67}Co and deformed neutron configurations inferred from neighboring Fe isotones. Comparisons along the N = 39 and N = 41 isotonic chains reveal a similarity in the structures of the Co and Mn isotopes.
Physical Review C | 2016
M. B. Bennett; C. Wrede; B. A. Brown; S. N. Liddick; D. Pérez-Loureiro; D. W. Bardayan; A. A. Chen; K. A. Chipps; C. Fry; B. E. Glassman; C. Langer; N. Larson; E. McNeice; Z. Meisel; W. Ong; P. O'Malley; Steven D Pain; C. J. Prokop; S. B. Schwartz; S. Suchyta; P. Thompson; M. Walters; X. Xu
The observed mass excesses of analog nuclear states with the same mass number
Physical Review Letters | 2016
M. B. Bennett; C. Wrede; B. A. Brown; S. N. Liddick; D. Pérez-Loureiro; D. W. Bardayan; A. A. Chen; K. A. Chipps; C. Fry; B. E. Glassman; C. Langer; N. Larson; E. McNeice; Z. Meisel; W. Ong; P. D. O’Malley; Steven D Pain; C. J. Prokop; H. Schatz; S. B. Schwartz; S. Suchyta; P. Thompson; M. Walters; X. Xu
A
Physical Review C | 2014
M. Pomorski; M. Pfützner; W. Dominik; R. Grzywacz; A. Stolz; T. Baumann; J. S. Berryman; H. Czyrkowski; R. Dąbrowski; A. Fijałkowska; T. N. Ginter; J. Johnson; G. Kamiński; N. Larson; S. N. Liddick; M. Madurga; C. Mazzocchi; S. Mianowski; K. Miernik; David Miller; S. V. Paulauskas; J. Pereira; K. Rykaczewski; S. Suchyta
and isospin
Physical Review C | 2014
M. Pomorski; R. Dąbrowski; J. S. Berryman; J. Johnson; S. Suchyta; G. Kamiński; K. Rykaczewski; S. Mianowski; M. Pfützner; S. N. Liddick; C. Mazzocchi; M. Madurga; David Miller; R. Grzywacz; J. Pereira; T. Baumann; H. Czyrkowski; A. Fijałkowska; N. Larson; A. Stolz; K. Miernik; W. Dominik; S. V. Paulauskas; T. N. Ginter
T
12th International Spring Seminar on Nuclear Physics: Current Problems and Prospects for Nuclear Structure | 2018
F. Recchia; D. Weisshaar; A. Gade; J. A. Tostevin; R. V. F. Janssens; M. Albers; V. M. Bader; T. Baugher; D. Bazin; J. S. Berryman; B. A. Brown; C. M. Campbell; M. P. Carpenter; J. Chen; C. J. Chiara; H. L. Crawford; C. R. Hoffman; F. G. Kondev; A. Korichi; C. Langer; T. Lauritsen; S. N. Liddick; E. Lunderberg; S. Noji; C. J. Prokop; S. Suchyta; K. Wimmer; S. Zhu
can be used to test the isobaric multiplet mass equation (IMME), which has, in most cases, been validated to a high degree of precision. A recent measurement [Kankainen et al., Phys. Rev. C 93 041304(R) (2016)] of the ground-state mass of
Physical Review Letters | 2016
M. B. Bennett; C. Wrede; B. A. Brown; S. N. Liddick; D. Pérez-Loureiro; D. W. Bardayan; A. A. Chen; K. A. Chipps; C. Fry; B. E. Glassman; C. Langer; N. Larson; E. McNeice; Z. Meisel; W. Ong; P. D. O'Malley; Steven D Pain; C. J. Prokop; H. Schatz; S. B. Schwartz; S. Suchyta; P. Thompson; M. Walters; X. Xu
^{31}
Physical Review C | 2014
M. Pomorski; M. Pfützner; W. Dominik; R. Grzywacz; A. Stolz; T. Baumann; J. S. Berryman; H. Czyrkowski; R. Dąbrowski; A. Fijałkowska; T. N. Ginter; J. Johnson; G. Kamiński; N. Larson; S. N. Liddick; M. Madurga; C. Mazzocchi; S. Mianowski; K. Miernik; David Miller; S. V. Paulauskas; J. Pereira; K. Rykaczewski; S. Suchyta
Cl led to a substantial breakdown of the IMME for the lowest
Physical Review C | 2012
S. N. Liddick; B. Abromeit; M. Bolla; N. Larson; S. Suchyta; A. Ayres; A. Bey; C. R. Bingham; L. Cartegni; R. Grzywacz; M. Madurga; D. Miller; S. Padgett; S. V. Paulauskas; H. L. Crawford; I. G. Darby; M. M. Rajabali; S. Ilyushkin; K. Rykaczewski
A = 31, T = 3/2