Thermodynamics of Continuous Spin photons
Philip Schuster, Gowri Sundaresan, Natalia Toro

TL;DR
This paper investigates the thermodynamics of continuous spin photons, exploring their thermal behavior and potential deviations from standard photons in the Standard Model, especially at energy scales near the spin-scale parameter.
Contribution
It provides the first detailed analysis of the thermodynamics of CSP photons, showing they behave similarly to standard photons with small corrections at low energies.
Findings
CSP photon thermodynamics are well-behaved and similar to standard photons.
Helicity modes with $h=\pm 1$ thermalize quickly, others take longer depending on $T/\rho$.
Deviations from standard photon behavior appear at energy scales near $\rho$.
Abstract
Special relativity allows massless particles to have states of different integer (or half-integer) helicities that mix under boosts, much like the spin-states of a massive particle. Such massless particles are known as continuous spin particles (CSPs), a term coined by Wigner, and they are notable for their infinite tower of spin polarizations. The mixing under boosts is controlled by a spin-scale with units of momentum. Normally, we assume . The interactions of CSPs are known to satisfy certain simple properties, one of which is that the limit generically recovers familiar interactions of massless scalars, photons, or gravitons, with all other polarizations decoupling in this limit. Thus, one can ask if the photon of the Standard Model is a CSP at small but non-zero . One concern about this possibility -- originally raised by Wigner -- is that…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Advanced Thermodynamics and Statistical Mechanics · Quantum Mechanics and Applications
