Manipulation of Coherent Optical Propagation Based on Monolayer MoS2 Resonator

Abstract Atomically thin two-dimensional semiconductor nanomaterials have attained considerable attention currently. We here theoretically investigate the phenomena of slow and superluminal light based on the MoS2 resonator system driven by two-tone fields. Superluminal and ultraslow probe light wit...

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Main Author: Huajun Chen
Format: Article
Language:English
Published: SpringerOpen 2019-03-01
Series:Photonic Sensors
Subjects:
Online Access:http://link.springer.com/article/10.1007/s13320-019-0535-z
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spelling doaj-a54e2bbb6a0e4466b50427b7b16aeb7f2020-11-25T01:12:29ZengSpringerOpenPhotonic Sensors1674-92512190-74392019-03-019431732610.1007/s13320-019-0535-zManipulation of Coherent Optical Propagation Based on Monolayer MoS2 ResonatorHuajun Chen0School of Mechanics and Photoelectric Physics, Anhui University of Science and TechnologyAbstract Atomically thin two-dimensional semiconductor nanomaterials have attained considerable attention currently. We here theoretically investigate the phenomena of slow and superluminal light based on the MoS2 resonator system driven by two-tone fields. Superluminal and ultraslow probe light without absorption can be obtained via manipulating the pump laser on- and off-resonant with the exciton frequency under different parameters regimes, respectively, of which the magnitude is larger than that in a carbon nanotube resonator. The bandwidth of the probe spectrum determined by the quality factor Q of MoS2 resonator is also presented. Furthermore, we also demonstrate the phenomenon of phonon induced transparency and show an optical transistor in the system. The all-optical device based on MoS2 resonator may indicate potential chip-scale applications in quantum information with the currently popular pump-probe technology.http://link.springer.com/article/10.1007/s13320-019-0535-zMoS2nanomechanical resonatorfast and slow lightoptical transistor
collection DOAJ
language English
format Article
sources DOAJ
author Huajun Chen
spellingShingle Huajun Chen
Manipulation of Coherent Optical Propagation Based on Monolayer MoS2 Resonator
Photonic Sensors
MoS2
nanomechanical resonator
fast and slow light
optical transistor
author_facet Huajun Chen
author_sort Huajun Chen
title Manipulation of Coherent Optical Propagation Based on Monolayer MoS2 Resonator
title_short Manipulation of Coherent Optical Propagation Based on Monolayer MoS2 Resonator
title_full Manipulation of Coherent Optical Propagation Based on Monolayer MoS2 Resonator
title_fullStr Manipulation of Coherent Optical Propagation Based on Monolayer MoS2 Resonator
title_full_unstemmed Manipulation of Coherent Optical Propagation Based on Monolayer MoS2 Resonator
title_sort manipulation of coherent optical propagation based on monolayer mos2 resonator
publisher SpringerOpen
series Photonic Sensors
issn 1674-9251
2190-7439
publishDate 2019-03-01
description Abstract Atomically thin two-dimensional semiconductor nanomaterials have attained considerable attention currently. We here theoretically investigate the phenomena of slow and superluminal light based on the MoS2 resonator system driven by two-tone fields. Superluminal and ultraslow probe light without absorption can be obtained via manipulating the pump laser on- and off-resonant with the exciton frequency under different parameters regimes, respectively, of which the magnitude is larger than that in a carbon nanotube resonator. The bandwidth of the probe spectrum determined by the quality factor Q of MoS2 resonator is also presented. Furthermore, we also demonstrate the phenomenon of phonon induced transparency and show an optical transistor in the system. The all-optical device based on MoS2 resonator may indicate potential chip-scale applications in quantum information with the currently popular pump-probe technology.
topic MoS2
nanomechanical resonator
fast and slow light
optical transistor
url http://link.springer.com/article/10.1007/s13320-019-0535-z
work_keys_str_mv AT huajunchen manipulationofcoherentopticalpropagationbasedonmonolayermos2resonator
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