Sonofermionescence: Fermions from Ringing Bubble of Sonoluminescence

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Hauptverfasser: Karmakar, Rajesh, Maity, Debaprasad
Format: Preprint
Veröffentlicht: 2024
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author Karmakar, Rajesh
Maity, Debaprasad
author_facet Karmakar, Rajesh
Maity, Debaprasad
contents Time-dependent gravitational background is well known as a theoretical laboratory for quantum mechanical particle production. In the present analysis, we explore such production in a time-dependent analog system. This is the follow-up of our earlier study on the Sonoluminescence phenomenon, which is modelled in terms of analog geometry coupled with the electromagnetic field exhibiting the quantum production of photons. In the same analog geometry, we studied fermion production. Although fermions have not been observed yet in the sonoluminescence experiment, we have shown here that such a system can produce a repeated flux of fermions via the parametric resonance from a quantum vacuum. Our analysis seems to suggest that in the laboratory setup, time-dependent analog systems could be an interesting playground where phenomena of quantum mechanical particle production can be observed.
format Preprint
id arxiv_https___arxiv_org_abs_2401_02405
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Sonofermionescence: Fermions from Ringing Bubble of Sonoluminescence
Karmakar, Rajesh
Maity, Debaprasad
High Energy Physics - Theory
Time-dependent gravitational background is well known as a theoretical laboratory for quantum mechanical particle production. In the present analysis, we explore such production in a time-dependent analog system. This is the follow-up of our earlier study on the Sonoluminescence phenomenon, which is modelled in terms of analog geometry coupled with the electromagnetic field exhibiting the quantum production of photons. In the same analog geometry, we studied fermion production. Although fermions have not been observed yet in the sonoluminescence experiment, we have shown here that such a system can produce a repeated flux of fermions via the parametric resonance from a quantum vacuum. Our analysis seems to suggest that in the laboratory setup, time-dependent analog systems could be an interesting playground where phenomena of quantum mechanical particle production can be observed.
title Sonofermionescence: Fermions from Ringing Bubble of Sonoluminescence
topic High Energy Physics - Theory
url https://arxiv.org/abs/2401.02405