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Autori principali: Zhou, Cheng-Long, Torbatian, Zahra, Yang, Shui-Hua, Zhang, Yong, Yi, Hong-Liang, Antezza, Mauro, Novko, Dino, Qiu, Cheng-Wei
Natura: Preprint
Pubblicazione: 2024
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Accesso online:https://arxiv.org/abs/2408.03698
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author Zhou, Cheng-Long
Torbatian, Zahra
Yang, Shui-Hua
Zhang, Yong
Yi, Hong-Liang
Antezza, Mauro
Novko, Dino
Qiu, Cheng-Wei
author_facet Zhou, Cheng-Long
Torbatian, Zahra
Yang, Shui-Hua
Zhang, Yong
Yi, Hong-Liang
Antezza, Mauro
Novko, Dino
Qiu, Cheng-Wei
contents Charge-order states of broken symmetry, such as charge density wave (CDW), are able to induce exceptional physical properties, however, the precise understanding of the underlying physics is still elusive. Here, we combine fluctuational electrodynamics and density functional theory to reveal an unconventional thermophotonic effect in CDW-bearing TiSe$_2$, referred to as thermophotonic-CDW ($tp$-CDW). The interplay of plasmon polariton and CDW electron excitations give rise to an anomalous negative temperature dependency in thermal photons transport, offering an intuitive fingerprint for a transformation of the electron order. Additionally, the demonstrated nontrivial features of $tp$-CDW transition hold promise for a controllable manipulation of heat flow, which could be extensively utilized in various fields such as thermal science and electron dynamics, as well as in next-generation energy devices.
format Preprint
id arxiv_https___arxiv_org_abs_2408_03698
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Unconventional Thermophotonic Charge Density Wave
Zhou, Cheng-Long
Torbatian, Zahra
Yang, Shui-Hua
Zhang, Yong
Yi, Hong-Liang
Antezza, Mauro
Novko, Dino
Qiu, Cheng-Wei
Materials Science
Strongly Correlated Electrons
Charge-order states of broken symmetry, such as charge density wave (CDW), are able to induce exceptional physical properties, however, the precise understanding of the underlying physics is still elusive. Here, we combine fluctuational electrodynamics and density functional theory to reveal an unconventional thermophotonic effect in CDW-bearing TiSe$_2$, referred to as thermophotonic-CDW ($tp$-CDW). The interplay of plasmon polariton and CDW electron excitations give rise to an anomalous negative temperature dependency in thermal photons transport, offering an intuitive fingerprint for a transformation of the electron order. Additionally, the demonstrated nontrivial features of $tp$-CDW transition hold promise for a controllable manipulation of heat flow, which could be extensively utilized in various fields such as thermal science and electron dynamics, as well as in next-generation energy devices.
title Unconventional Thermophotonic Charge Density Wave
topic Materials Science
Strongly Correlated Electrons
url https://arxiv.org/abs/2408.03698