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Hauptverfasser: Ameri, Vahid, Askari, Alidad, Rafiee, Morteza, Eghbali-Arani, Mohammad
Format: Preprint
Veröffentlicht: 2023
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2311.18089
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author Ameri, Vahid
Askari, Alidad
Rafiee, Morteza
Eghbali-Arani, Mohammad
author_facet Ameri, Vahid
Askari, Alidad
Rafiee, Morteza
Eghbali-Arani, Mohammad
contents An appropriate Lagrangian is considered for a system comprising a moving nanoparticle in a semi-infinite space, and the electromagnetic and matter fields are quantized. Through an analysis of the absorbed power radiation, it is demonstrated that the quantum friction experienced by high-velocity nanoparticles can be identified as a dissipative term in the radiation power of the nanoparticle. The absorbed power radiation for a moving nanoparticle is derived and compared with that of a static one. By considering two different temperature scenarios, it is explicitly shown that the absorbed power radiation for a moving nanoparticle always contains a negative term in its power spectrum, which can be attributed to the power lost due to non-contact quantum friction.
format Preprint
id arxiv_https___arxiv_org_abs_2311_18089
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Electromagnetic field quantization in the presence of a moving nano-particle
Ameri, Vahid
Askari, Alidad
Rafiee, Morteza
Eghbali-Arani, Mohammad
Quantum Physics
An appropriate Lagrangian is considered for a system comprising a moving nanoparticle in a semi-infinite space, and the electromagnetic and matter fields are quantized. Through an analysis of the absorbed power radiation, it is demonstrated that the quantum friction experienced by high-velocity nanoparticles can be identified as a dissipative term in the radiation power of the nanoparticle. The absorbed power radiation for a moving nanoparticle is derived and compared with that of a static one. By considering two different temperature scenarios, it is explicitly shown that the absorbed power radiation for a moving nanoparticle always contains a negative term in its power spectrum, which can be attributed to the power lost due to non-contact quantum friction.
title Electromagnetic field quantization in the presence of a moving nano-particle
topic Quantum Physics
url https://arxiv.org/abs/2311.18089