Phonon-assisted Casimir interactions between piezoelectric materials

Fuente: arXiv
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Main Authors: Le, Dai-Nam, Rodriguez-Lopez, Pablo, Woods, Lilia M.
Format: Preprint
Published: 2024
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author Le, Dai-Nam
Rodriguez-Lopez, Pablo
Woods, Lilia M.
author_facet Le, Dai-Nam
Rodriguez-Lopez, Pablo
Woods, Lilia M.
contents The strong coupling between electromagnetic field and lattice oscillation in piezoelectric materials gives rise to phonon polariton excitations. Such quasiparticles open up new directions in modulating the ubiquitous Casimir force. Here by utilizing the generalized Born-Huang hydrodynamics model, three types of phonons in piezoelectrics are studied: longitudinal optical phonon, transverse optical phonon and phonon polariton. The phonon-electromagnetic coupling results in a complex set of Fresnel reflection matrices which prevents the utilization of the standard Lifshitz approach for calculating Casimir forces in the imaginary frequency domain. Our calculations are based on an approach within real frequency and finite temperatures, through which various regimes of the Casimir interaction are examined. Our study shows that piezoelectrics emerge as a set of materials where this ubiquitous force can be controlled via phonon properties for the first time. The Casimir interaction appears as a suitable means to distinguish between different types of surface phonon polaritons associated with different structural piezoelectric polytypes.
format Preprint
id arxiv_https___arxiv_org_abs_2408_13368
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Phonon-assisted Casimir interactions between piezoelectric materials
Le, Dai-Nam
Rodriguez-Lopez, Pablo
Woods, Lilia M.
Mesoscale and Nanoscale Physics
Materials Science
Quantum Physics
The strong coupling between electromagnetic field and lattice oscillation in piezoelectric materials gives rise to phonon polariton excitations. Such quasiparticles open up new directions in modulating the ubiquitous Casimir force. Here by utilizing the generalized Born-Huang hydrodynamics model, three types of phonons in piezoelectrics are studied: longitudinal optical phonon, transverse optical phonon and phonon polariton. The phonon-electromagnetic coupling results in a complex set of Fresnel reflection matrices which prevents the utilization of the standard Lifshitz approach for calculating Casimir forces in the imaginary frequency domain. Our calculations are based on an approach within real frequency and finite temperatures, through which various regimes of the Casimir interaction are examined. Our study shows that piezoelectrics emerge as a set of materials where this ubiquitous force can be controlled via phonon properties for the first time. The Casimir interaction appears as a suitable means to distinguish between different types of surface phonon polaritons associated with different structural piezoelectric polytypes.
title Phonon-assisted Casimir interactions between piezoelectric materials
topic Mesoscale and Nanoscale Physics
Materials Science
Quantum Physics
url https://arxiv.org/abs/2408.13368