Strong Chirality Suppression in 1-D correlated Weyl Semimetal (TaSe4)2I

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Hauptverfasser: Khandelwal, Utkarsh, Jog, Harshvardhan, Xu, Shupeng, Chen, Yicong, Qu, Kejian, Zhao, Chengxi, Mele, Eugene, Shoemaker, Daniel P., Agarwal, Ritesh
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Veröffentlicht: 2024
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author Khandelwal, Utkarsh
Jog, Harshvardhan
Xu, Shupeng
Chen, Yicong
Qu, Kejian
Zhao, Chengxi
Mele, Eugene
Shoemaker, Daniel P.
Agarwal, Ritesh
author_facet Khandelwal, Utkarsh
Jog, Harshvardhan
Xu, Shupeng
Chen, Yicong
Qu, Kejian
Zhao, Chengxi
Mele, Eugene
Shoemaker, Daniel P.
Agarwal, Ritesh
contents The interaction of light with correlated Weyl semimetals (WSMs) provides a unique platform for exploring non-equilibrium phases and fundamental properties such as chirality. Here, we investigate the structural chirality of (TaSe4)2I, a correlated WSM, under weak optical pumping using Circular Photogalvanic Effect (CPGE) measurements and Raman spectroscopy. Surprisingly, we find that there is a loss of chirality in (TaSe4)2I above a threshold light intensity. We suggest that the loss of chirality is due to an optically driven phase transition into an achiral structure distinct from the ground state. This structural transformation is supported by fluence-dependent Raman spectra, revealing a new peak at low pump fluences that disappears above the threshold fluence. The loss of chirality even at low optical powers suggests that the system quickly transitions into a non WSM phase, and also highlights the importance of considering light-induced structural interactions in understanding the behavior of correlated systems. These studies showcase that even low excitation powers can be used to control the properties of correlated topological systems, opening up new avenues for low power optical devices.
format Preprint
id arxiv_https___arxiv_org_abs_2405_18513
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Strong Chirality Suppression in 1-D correlated Weyl Semimetal (TaSe4)2I
Khandelwal, Utkarsh
Jog, Harshvardhan
Xu, Shupeng
Chen, Yicong
Qu, Kejian
Zhao, Chengxi
Mele, Eugene
Shoemaker, Daniel P.
Agarwal, Ritesh
Materials Science
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
The interaction of light with correlated Weyl semimetals (WSMs) provides a unique platform for exploring non-equilibrium phases and fundamental properties such as chirality. Here, we investigate the structural chirality of (TaSe4)2I, a correlated WSM, under weak optical pumping using Circular Photogalvanic Effect (CPGE) measurements and Raman spectroscopy. Surprisingly, we find that there is a loss of chirality in (TaSe4)2I above a threshold light intensity. We suggest that the loss of chirality is due to an optically driven phase transition into an achiral structure distinct from the ground state. This structural transformation is supported by fluence-dependent Raman spectra, revealing a new peak at low pump fluences that disappears above the threshold fluence. The loss of chirality even at low optical powers suggests that the system quickly transitions into a non WSM phase, and also highlights the importance of considering light-induced structural interactions in understanding the behavior of correlated systems. These studies showcase that even low excitation powers can be used to control the properties of correlated topological systems, opening up new avenues for low power optical devices.
title Strong Chirality Suppression in 1-D correlated Weyl Semimetal (TaSe4)2I
topic Materials Science
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
url https://arxiv.org/abs/2405.18513