S. Chattopadhyay
Wayne State University
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Featured researches published by S. Chattopadhyay.
Physical Review Letters | 2001
C. Adler; Z. Ahammed; C. Allgower; J. Amonett; B. D. Anderson; M. Anderson; G. S. Averichev; J. Balewski; O. Barannikova; L. S. Barnby; J. Baudot; S. Bekele; V. V. Belaga; R. Bellwied; J. Berger; H. Bichsel; L. C. Bland; C. O. Blyth; B. E. Bonner; R. Bossingham; A. Boucham; A. V. Brandin; R. V. Cadman; H. Caines; M. Calderón de la Barca Sánchez; A. Cardenas; J. Carroll; Jimena del Castillo; M. Castro; D. Cebra
We report first results on elliptic flow of identified particles at mid-rapidity in Au+Au collisions at
Archive | 2010
J. Adams; M. M. Aggarwal; Z. Ahammed; J. Amonett; Brian Anderson; D. Arkhipkin; G. S. Averichev; S.K. Badyal; L. S. Barnby; J. Baudot; V. V. Belaga; A. Bellingeri-Laurikainen; R. Bellwied; J. Berger; B. I. Bezverkhny; A. Bhasin; V.S. Bhatia; H. Bichsel; J. Bielcik; J. Bielcikova; A. Billmeier; L. C. Bland; A. Boucham; J. Bouchet; H. Caines; Matthew E. Calder; J. Alvarez Castillo; D. Cebra; S. Chattopadhyay; How-Foo Chen
sqrt{s_{_{NN}}}=130
Physical Review C | 1995
S. D. Paul; H. C. Jain; S. Chattopadhyay; M. L. Jhingan; Javid A. Sheikh
GeV using the STAR TPC at RHIC. The elliptic flow as a function of transverse momentum and centrality differs significantly for particles of different masses. This dependence can be accounted for in hydrodynamic models, indicating that the system created shows a behavior consistent with collective hydrodynamical flow. The fit to the data with a simple model gives information on the temperature and flow velocities at freeze-out.
Physical Review C | 1994
S. Chattopadhyay; H. C. Jain; S. D. Paul; Javid A. Sheikh; M. L. Jhingan