We analyze in this work anisotropic heat conduction induced by a harmonically oscillating laser source incident on rotating conductors, exploiting an analogy with an effect discovered long ago, called the Zel’dovich effect. We re-covered the main results of a recently published paper that predicts the translational Doppler frequency shift of a thermal wave induced on a sample moving with uniform rectilinear motion. We extend then this framework to take into account the frequency shift of a thermal field propagating on a rotating platform. We show that it coincides with the rotational frequency shift which has been recently observed on surface acoustic waves and hydrodynamic surface waves, called rotational superradiance. Finally, we use an analogy with the Tolman effect to deduce a simple estimate of the average temperature gradient induced by rotation, showing the existence of a new cooling effect associated with heat torque transfer.

A Thermal Analogue of the Zel’Dovich Effect / Bei, Gianpaolo. - In: JOURNAL OF APPLIED MATHEMATICS AND PHYSICS. - ISSN 2327-4352. - 11:12(2023), pp. -3983. [10.4236/jamp.2023.1112254]

A Thermal Analogue of the Zel’Dovich Effect

Bei, Gianpaolo
2023

Abstract

We analyze in this work anisotropic heat conduction induced by a harmonically oscillating laser source incident on rotating conductors, exploiting an analogy with an effect discovered long ago, called the Zel’dovich effect. We re-covered the main results of a recently published paper that predicts the translational Doppler frequency shift of a thermal wave induced on a sample moving with uniform rectilinear motion. We extend then this framework to take into account the frequency shift of a thermal field propagating on a rotating platform. We show that it coincides with the rotational frequency shift which has been recently observed on surface acoustic waves and hydrodynamic surface waves, called rotational superradiance. Finally, we use an analogy with the Tolman effect to deduce a simple estimate of the average temperature gradient induced by rotation, showing the existence of a new cooling effect associated with heat torque transfer.
2023
anisotropic heat diffusion; chiral spinning thermal waves; thermal Doppler effect; thermal polarization vector; thermal zel’dovich effect
01 Pubblicazione su rivista::01a Articolo in rivista
A Thermal Analogue of the Zel’Dovich Effect / Bei, Gianpaolo. - In: JOURNAL OF APPLIED MATHEMATICS AND PHYSICS. - ISSN 2327-4352. - 11:12(2023), pp. -3983. [10.4236/jamp.2023.1112254]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1697767
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