Conceptual

Generalized Uncertainty Principle Corrections to Quark-Gluon Plasma Thermodynamics

How a minimal-length deformation of quantum mechanics (the Linear-Quadratic Generalized Uncertainty Principle) modifies the equation of state of an ideal quark-gluon plasma. Derives GUP-corrected pressure, energy density, entropy, speed of sound, and bulk viscosity from a deformed grand-canonical partition function, and applies them to the early universe's temperature evolution.