2013/05/17 by S. M. Mahajan, Swadesh M. Mahajan, Felipe A. Asenjo · 1 citation
Medicine · Physics and Astronomy · #Advanced Thermodynamics and Statistical Mechanics #Biofield Effects and Biophysics #Classical mechanics #Nonlinear system #Pauli exclusion principle #Physics #Quantum #Quantum Mechanics and Applications #Quantum dissipation #Quantum dynamics #Quantum mechanics #Quantum potential #Quantum statistical mechanics #Relativistic quantum mechanics #Supersymmetric quantum mechanics #physics.flu-dyn
paper · pdf · doi:10.1007/s10773-014-2341-0
arxiv created 2013/05/17 · openalex publication_date 2014/09/19 · arxiv updated 2015/06/16 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05
It is shown that a hot relativistic fluid could be viewed as a collection of self-interacting quantum objects. They obey a nonlinear equation which is a modification of the quantum equation obeyed by elementary constituents of the fluid. A uniform phenomenological prescription, to affect the quantum transition from a corresponding classical system, is invoked to derive the nonlinear Schrödinger, Klein-Gordon, and Pauli-Schrödinger equations. It is expected that the created nonlinear quantum mechanics would advance, in a fundamental way, both the conceptual understanding and computational abilities, particularly, in the field of extremely high energy-density physics.