We analyze the statistical properties of radiative transitions for a molecular system possessing discrete, equally spaced, energy levels, interacting with thermal radiation at constant temperature. A radiative fluctuation-dissipation theorem is derived and the particle velocity distribution analyzed. It is shown analytically that, neglecting molecular collisions, the velocity distribution function cannot be Gaussian, as the equilibrium value for the kurtosis 𝜅 is different from 𝜅=3 . A Maxwellian velocity distribution can be recovered in the limit of small radiative friction.

Particle-photon radiative interactions and thermalization / Pezzotti, Chiara; Giona, Massimiliano. - In: PHYSICAL REVIEW. E. - ISSN 2470-0045. - 108:2(2023). [10.1103/physreve.108.024147]

Particle-photon radiative interactions and thermalization

Pezzotti, Chiara;Giona, Massimiliano
2023

Abstract

We analyze the statistical properties of radiative transitions for a molecular system possessing discrete, equally spaced, energy levels, interacting with thermal radiation at constant temperature. A radiative fluctuation-dissipation theorem is derived and the particle velocity distribution analyzed. It is shown analytically that, neglecting molecular collisions, the velocity distribution function cannot be Gaussian, as the equilibrium value for the kurtosis 𝜅 is different from 𝜅=3 . A Maxwellian velocity distribution can be recovered in the limit of small radiative friction.
2023
Gaussianity breaking, particle-photon interactions
01 Pubblicazione su rivista::01a Articolo in rivista
Particle-photon radiative interactions and thermalization / Pezzotti, Chiara; Giona, Massimiliano. - In: PHYSICAL REVIEW. E. - ISSN 2470-0045. - 108:2(2023). [10.1103/physreve.108.024147]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1750344
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