J
J. A. Hauger
Researcher at Purdue University
Publications - 41
Citations - 1010
J. A. Hauger is an academic researcher from Purdue University. The author has contributed to research in topics: Critical exponent & Nuclear matter. The author has an hindex of 19, co-authored 41 publications receiving 992 citations. Previous affiliations of J. A. Hauger include Georgia Regents University.
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Journal ArticleDOI
Determination of critical exponents from the multifragmentation of gold nuclei.
M. L. Gilkes,Sebastiano Albergo,F. S. Bieser,F. P. Brady,Z. Caccia,D. Cebra,A. D. Chacon,J. L. Chance,Y. Choi,Y. Choi,Salvatore Costa,J. B. Elliott,J. A. Hauger,Andrew S. Hirsch,E. L. Hjort,Antonio Insolia,M. Justice,D. Keane,J. C. Kintner,V. Lindenstruth,M. A. Lisa,U. Lynen,H. S. Matis,M. A. McMahan,C. McParland,Wolfgang Müller,D. L. Olson,M. D. Partlan,N. T. Porile,Renato Potenza,G. Rai,J. Rasmussen,H. G. Ritter,J. Romanski,J. L. Romero,G. V. Russo,H. Sann,R. P. Scharenberg,A. Scott,Y. Shao,B. K. Srivastava,T. J. M. Symons,M. L. Tincknell,Cristina Tuve,S. Wang,P. Warren,H. H. Weiman,K.L. Wolf +47 more
TL;DR: Using reverse kinematics, values for the critical exponents [gamma], [beta], and [tau] are determined, close to those for liquid-gas systems and clearly different than those for 3D percolation and the liquid- gas mean field limit.
Journal ArticleDOI
Dynamics of the Multifragmentation of 1A GeV Gold on Carbon.
J. A. Hauger,Sebastiano Albergo,F. S. Bieser,F. P. Brady,Z. Caccia,D. Cebra,A. D. Chacon,J. L. Chance,Y. Choi,Salvatore Costa,James B. Elliott,M. L. Gilkes,Andrew S. Hirsch,E. Hjort,A. Insolia,M. Justice,D. Keane,J. C. Kintner,Volker Lindenstruth,M. A. Lisa,U. Lynen,H. S. Matis,M. A. McMahan,C. P. McParland,W. F. J. Müller,D. L. Olson,M. D. Partlan,N. T. Porile,Renato Potenza,G. Rai,J. O. Rasmussen,H. G. Ritter,J. Romanski,J. L. Romero,G.V. Russo,H. Sann,R. P. Scharenberg,Alwyn C. Scott,Y. Shao,B. K. Srivastava,T. J. M. Symons,M. Tincknell,Cristina Tuve,S. Wang,P. Warren,H. H. Wieman,T. Wienold,K.L. Wolf +47 more
TL;DR: The mean mass, charge, excitation energy, and the initial temperature of the remnant have been determined as a function of the total charge multiplicity, as well as the freeze-out temperature, and their values at the critical point have be determined.
Journal ArticleDOI
Fragment flow in Au+Au collisions.
M. D. Partlan,M. D. Partlan,Sebastiano Albergo,F. S. Bieser,F. P. Brady,Z. Caccia,D. Cebra,A. D. Chacon,J. L. Chance,Y. Choi,Salvatore Costa,J. B. Elliott,M. L. Gilkes,J. A. Hauger,Andrew S. Hirsch,E. L. Hjort,Antonio Insolia,M. Justice,D. Keane,J. C. Kintner,M. A. Lisa,H. S. Matis,M. A. McMahan,C. P. McParland,D. L. Olson,G. Peilert,N. T. Porile,Renato Potenza,G. Rai,J. O. Rasmussen,H. G. Ritter,J. Romanski,J. L. Romero,G. V. Russo,R. P. Scharenberg,A. Scott,Y. Shao,B. K. Srivastava,T. J. M. Symons,M. L. Tincknell,Cristina Tuve,S. Wang,P. Warren,H. H. Wieman,K.L. Wolf +44 more
TL;DR: The results show a strong increase of the directed flow with fragment mass at all energies measured, and it is found that neither the ``soft`` nor the ``hard`` equation of state can describe the data over the entire range of beam energies.
Journal ArticleDOI
Comparison of 1A GeV 197 Au+C data with thermodynamics: The nature of the phase transition in nuclear multifragmentation
R. P. Scharenberg,B. K. Srivastava,Sebastiano Albergo,F. S. Bieser,F. P. Brady,Z. Caccia,D. Cebra,A. D. Chacon,J. L. Chance,Y. Choi,Y. Choi,Salvatore Costa,J. B. Elliott,J. B. Elliott,M. L. Gilkes,J. A. Hauger,A. S. Hirsch,E. L. Hjort,A. Insolia,M. Justice,M. Justice,D. Keane,J. C. Kintner,J. C. Kintner,V. Lindenstruth,V. Lindenstruth,M. A. Lisa,M. A. Lisa,H. S. Matis,M. A. McMahan,C. P. McParland,C. P. McParland,Wolfgang Müller,D. L. Olson,M. D. Partlan,N. T. Porile,Renato Potenza,G. Rai,J. O. Rasmussen,H. G. Ritter,J. Romanski,J. Romanski,J. L. Romero,G.V. Russo,H. Sann,A. Scott,Y. Shao,Y. Shao,T. J. M. Symons,M. L. Tincknell,M. L. Tincknell,Cristina Tuve,S. Wang,P. Warren,P. Warren,H. H. Wieman,T. Wienold,T. Wienold,K.L. Wolf +58 more
TL;DR: In this paper, the Copenhagen statistical multifragmentation model (SMM) was used to identify high momentum ejectiles leaving an excited remnant of mass A, charge Z, and excitation energy E* which subsequently multifragments.
Journal ArticleDOI
Radial flow in Au+Au collisions at E=(0.25-1.15)A GeV.
M. A. Lisa,Sebastiano Albergo,F. S. Bieser,F. P. Brady,Z. Caccia,D. Cebra,A. D. Chacon,J. L. Chance,Y. Choi,Salvatore Costa,J. B. Elliott,M. L. Gilkes,J. A. Hauger,Andrew S. Hirsch,E. L. Hjort,Antonio Insolia,M. Justice,D. Keane,J. C. Kintner,H. S. Matis,M. A. McMahan,C. P. McParland,D. L. Olson,M. D. Partlan,N. T. Porile,Renato Potenza,G. Rai,J. O. Rasmussen,H. G. Ritter,J. Romanski,J. L. Romero,G. V. Russo,R. P. Scharenberg,A. Scott,Y. Shao,B. K. Srivastava,T. J. M. Symons,M. L. Tincknell,Cristina Tuve,S. Wang,P. Warren,Gary Westfall,Gary Westfall,H. H. Wieman,K.L. Wolf +44 more
TL;DR: Lisa, M.A., Albergo, S., Bieser, F., Brady, F.P., Caccia, Z., Cebra, D.A.; Chacon, A.L., Huager, J.A.S., Hirsch, E.S.