Polar Distribution of Final State Particles in High Energy Heavy Ion Collisions

  • The anisotropy of azimuthal distribution for the final state particles in the center-of-mass coordinate systems where the z axis is rotated to various polar angles in the reaction plane is studied.A method to determine the flow angle is proposed. Studying the polar angle distributions for collisions of1.2AGeV Ar+KC,1.2AGeV Ne+NaF and 2.1AGeV Ne+NaF at the Bevalac streamer chamber in the coordinate systems with the z axis rotated to the now angles,we can estimate the fraction of the anisotropic emission particles to all the final state particles and the degree of concentration around the flow direction quantitatively.
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Huo Lei, Liu Yiming, Zhang Weining and Jiang Yuzhen. Polar Distribution of Final State Particles in High Energy Heavy Ion Collisions[J]. Chinese Physics C, 1996, 20(4): 311-316.
Huo Lei, Liu Yiming, Zhang Weining and Jiang Yuzhen. Polar Distribution of Final State Particles in High Energy Heavy Ion Collisions[J]. Chinese Physics C, 1996, 20(4): 311-316. shu
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Received: 1900-01-01
Revised: 1900-01-01
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Polar Distribution of Final State Particles in High Energy Heavy Ion Collisions

    Corresponding author: Huo Lei,
  • Department of Physics,Harbin Institute of Technology, Harbin 1500012 Department of Physics,Kent State University,Kent, Ohio 442423 Department of Physics,University of California,Riverside,Ca 92521

Abstract: The anisotropy of azimuthal distribution for the final state particles in the center-of-mass coordinate systems where the z axis is rotated to various polar angles in the reaction plane is studied.A method to determine the flow angle is proposed. Studying the polar angle distributions for collisions of1.2AGeV Ar+KC,1.2AGeV Ne+NaF and 2.1AGeV Ne+NaF at the Bevalac streamer chamber in the coordinate systems with the z axis rotated to the now angles,we can estimate the fraction of the anisotropic emission particles to all the final state particles and the degree of concentration around the flow direction quantitatively.

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