Z. Ma
5 Papers
10 Citations
Z. Ma is an academic researcher. The author has contributed to research in topics: Neutron & Ground state. The author has an hindex of 2, co-authored 5 publications.
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Papers
Studies of nuclei close to 132Sn using single‐neutron transfer reactions
K. J. Jones,S. D. Pain,R. L. Kozub,Aderemi S. Adekola,D. W. Bardayan,J. C. Blackmon,W. N. Catford,K. Y. Chae,Kelly Chipps,J. A. Cizewski,Luke E. Erikson,A. L. Gaddis,U. Greife,R. Grzywacz,C. Harlin,Robert Hatarik,J. A. Howard,J.M. James,R. Kapler,W. Królas,J. F. Liang,Z. Ma,Catalin Matei,Brian Moazen,C. D. Nesaraja,P. D. O'Malley,N. P. Patterson,Stanley Paulauskas,Dan Shapira,J. F. Shriner,M. Sikora,D. J. Sissom,Michael S. Smith,T. P. Swan,J. S. Thomas,G. L. Wilson +35 more
- 23 Mar 2009
TL;DR: In this article, the angular distributions of the ground state of 132Sn, 130Sn, and 134Te were investigated in inverse kinematics using deuterated polyethylene targets.
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Single particle states in ^131Sn and the r-process
R. L. Kozub,J. F. Shriner,Aderemi S. Adekola,D. W. Bardayan,J. C. Blackmon,F. Liang,C. D. Nesaraja,Dan Shapira,Michael Scott Smith,K. Y. Chae,K. L. Jones,Z. Ma,Brian Moazen,Kelly Chipps,L. Erikson,J. A. Cizewski,Robert Hatarik,S. D. Pain,Catalin Matei,W. Królas,T. P. Swan +20 more
- 01 Oct 2007
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Neutron Transfer Reactions: Surrogates for Neutron Capture for Basic and Applied Nuclear Science
J. A. Cizewski,K.L. Jones,R. L. Kozub,S. D. Pain,William A. Peters,Aderemi S. Adekola,Jacob Allen,D. W. Bardayan,J. A. Becker,J. C. Blackmon,K. Y. Chae,Kelly Chipps,Luke E. Erikson,A. L. Gaddis,C. Harlin,Robert Hatarik,J.A. Howard,Marian Jandel,M. S. Johnson,R. Kapler,W. Krolas,F. Liang,R. J. Livesay,Z. Ma,Catalin Matei,C. Matthews,Brian Moazen,C. D. Nesaraja,Patrick O'Malley,N. Patterson,Stan Paulauskas,Timothy Pelham,S. T. Pittman,D. C. Radford,J. Rogers,Kyle Schmitt,Dan Shapira,J. F. Shriner,D. J. Sissom,Michael S. Smith,T.P.D. Swan,J. S. Thomas,D. J. Vieira,J. B. Wilhelmy,G.L. Wilson +44 more
- 10 Mar 2009
TL;DR: In this article, a program has been developed at the Holifield Radioactive Ion Beam Facility at Oak Ridge National Laboratory to study single-neutron transfer (d,p) reactions with rare isotope beams to provide information on neutron-induced reactions on unstable nuclei.
2
Single‐Particle Structure of Neutron‐Rich Nuclei
J. A. Cizewski,K. L. Jones,J. S. Thomas,D. W. Bardayan,J. C. Blackmon,Carl J Gross,J. F. Liang,Dan Shapira,Michael S. Smith,D. W. Stracener,R. L. Kozub,C. D. Nesaraja,Uwe Greife,R. J. Livesay,Z. Ma +14 more
- 19 May 2004
TL;DR: In this article, the d(82Ge,p) reaction was measured in inverse kinematics at the Holifield Radioactive Ion Beam facility, enabling a study of the evolution of single particle structure above the N=50 shell gap for neutron-rich nuclei.
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Studies of Neutron-Rich Nuclei with (d,p) Reactions in Inverse Kinematics at the HRIBF
K. L. Jones,C. Baktash,D. W. Bardayan,J. C. Blackmon,W. N. Catford,J. A. Cizewski,Ryan P. Fitzgerald,Uwe Greife,Carl J Gross,M. S. Johnson,R. L. Kozub,J. F. Liang,R. J. Livesay,Z. Ma,Brian Moazen,C. D. Nesaraja,Dan Shapira,Michael S. Smith,J. S. Thomas,D. W. Visser +19 more
- 04 May 2005
TL;DR: In this paper, the 2H(130,132Sn,p)131,133Sn reactions at the Holifield Radioactive Beam Facility (HRIBF) of Oak Ridge National Laboratory have been measured using (d, p) reactions in inverse kinematics.