Quantum interference and occupation control in high harmonic generation from monolayer $WS_2$

Fuente: arXiv
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Autores principales: Kim, Minjeong, Kim, Taeho, Galler, Anna, Kim, Dasol, Chacon, Alexis, Gong, Xiangxin, Yang, Yuhui, Fang, Rouli, Watanabe, Kenji, Taniguchi, Takashi, Kim, B. J., Chae, Sang Hoon, Jo, Moon-Ho, Rubio, Angel, Neufeld, Ofer, Kim, Jonghwan
Formato: Preprint
Publicado: 2025
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author Kim, Minjeong
Kim, Taeho
Galler, Anna
Kim, Dasol
Chacon, Alexis
Gong, Xiangxin
Yang, Yuhui
Fang, Rouli
Watanabe, Kenji
Taniguchi, Takashi
Kim, B. J.
Chae, Sang Hoon
Jo, Moon-Ho
Rubio, Angel
Neufeld, Ofer
Kim, Jonghwan
author_facet Kim, Minjeong
Kim, Taeho
Galler, Anna
Kim, Dasol
Chacon, Alexis
Gong, Xiangxin
Yang, Yuhui
Fang, Rouli
Watanabe, Kenji
Taniguchi, Takashi
Kim, B. J.
Chae, Sang Hoon
Jo, Moon-Ho
Rubio, Angel
Neufeld, Ofer
Kim, Jonghwan
contents Two-dimensional hexagonal materials such as transition metal dichalcogenides exhibit valley degrees of freedom, offering fascinating potential for valley-based quantum computing and optoelectronics. In nonlinear optics, the K and K' valleys provide excitation resonances that can be used for ultrafast control of excitons, Bloch oscillations, and Floquet physics. Under intense laser fields, however, the role of coherent carrier dynamics away from the K/K' valleys is largely unexplored. In this study, we observe quantum interferences in high harmonic generation from monolayer $WS_2$ as laser fields drive electrons from the valleys across the full Brillouin zone. In the perturbative regime, interband resonances at the valleys enhance high harmonic generation through multi-photon excitations. In the strong-field regime, the high harmonic spectrum is sensitively controlled by light-driven quantum interferences between the interband valley resonances and intraband currents originating from electrons occupying various points in the Brillouin zone, also away from K/K' valleys such as $Γ$ and M. Our experimental observations are in strong agreement with quantum simulations, validating their interpretation. This work proposes new routes for harnessing laser-driven quantum interference in two-dimensional hexagonal systems and all-optical techniques to occupy and read-out electronic structures in the full Brillouin zone via strong-field nonlinear optics, advancing quantum technologies.
format Preprint
id arxiv_https___arxiv_org_abs_2503_04335
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum interference and occupation control in high harmonic generation from monolayer $WS_2$
Kim, Minjeong
Kim, Taeho
Galler, Anna
Kim, Dasol
Chacon, Alexis
Gong, Xiangxin
Yang, Yuhui
Fang, Rouli
Watanabe, Kenji
Taniguchi, Takashi
Kim, B. J.
Chae, Sang Hoon
Jo, Moon-Ho
Rubio, Angel
Neufeld, Ofer
Kim, Jonghwan
Optics
Materials Science
Two-dimensional hexagonal materials such as transition metal dichalcogenides exhibit valley degrees of freedom, offering fascinating potential for valley-based quantum computing and optoelectronics. In nonlinear optics, the K and K' valleys provide excitation resonances that can be used for ultrafast control of excitons, Bloch oscillations, and Floquet physics. Under intense laser fields, however, the role of coherent carrier dynamics away from the K/K' valleys is largely unexplored. In this study, we observe quantum interferences in high harmonic generation from monolayer $WS_2$ as laser fields drive electrons from the valleys across the full Brillouin zone. In the perturbative regime, interband resonances at the valleys enhance high harmonic generation through multi-photon excitations. In the strong-field regime, the high harmonic spectrum is sensitively controlled by light-driven quantum interferences between the interband valley resonances and intraband currents originating from electrons occupying various points in the Brillouin zone, also away from K/K' valleys such as $Γ$ and M. Our experimental observations are in strong agreement with quantum simulations, validating their interpretation. This work proposes new routes for harnessing laser-driven quantum interference in two-dimensional hexagonal systems and all-optical techniques to occupy and read-out electronic structures in the full Brillouin zone via strong-field nonlinear optics, advancing quantum technologies.
title Quantum interference and occupation control in high harmonic generation from monolayer $WS_2$
topic Optics
Materials Science
url https://arxiv.org/abs/2503.04335