Physics – Nuclear Physics – Nuclear Theory
Scientific paper
2004-01-23
Few Body Syst. 34 (2004) 119-125
Physics
Nuclear Physics
Nuclear Theory
6 pp. Prepared for International Workshop on Critical Stability: Dynamics and Structure of Critically Stable Quantum Few-Body
Scientific paper
10.1007/s00601-004-0032-8
We present a relativistic three-body equation to study the stability of the isolated three-body system and the correlations in a medium of finite temperatures and densities. Relativity is implemented utilizing the light front form. Using a zero-range force we find the relativistic analog of the Thomas collapse and investigate the possibility that the nucleon exists as a Borromean system. Within a systematic Dyson equation approach we calculate the three-body Mott transition and the critical temperature of the color-superconducting phase.
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