Published July 24, 1995 | Version v1
Journal article

Quantum evolution of the disoriented chiral condensates

  • 1. Lawrence Berkeley Lab., CA (United States). Div. of Nuclear Science
  • 2. Los Alamos National Lab., NM (United States). Theoretical Div.
  • 3. Minnesota Univ., Minneapolis, MN (United States). School of Physics and Astronomy

Description

We study the dynamics of the chiral phase transition expected during the expansion of the quark-gluon plasma produced in a high energy hadron or heavy ion collision, using the O(4) linear sigma model in the mean field approximation. Imposing boost invariant initial conditions at an initial proper time τ0 and starting from an approximate equilibrium configuration, we investigate the possibility of formation of disoriented chiral condensate during the expansion. In order to create large domains of disoriented chiral condensates low-momentum instabilities have to last for long enough periods of time. Our simulations show no instabilities for an initial thermal configuration. For some of the out-of-equilibrium initial states studied, the fluctuation in the number of particles with low transverse momenta become large at late proper times. (orig.)

Additional details

Publishing Information

Journal Title
Nuclear Physics. A
Journal Volume
590
Journal Issue
1-2
Journal Page Range
p. 581c-584c.
ISSN
0375-9474
CODEN
NUPABL

Conference

Title
11. international conference on ultra-relativistic nucleus-nucleus collisions (Quark Matter).
Dates
9-13 Jan 1995.
Place
Monterey, CA (United States).