Spatial filtering of interlayer exciton ground state in WSe2/MoS2 heterobilayer

Fuente: arXiv
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Hauptverfasser: Chen, Disheng, Dini, Kevin, Rasmita, Abdullah, Huang, Zumeng, Tan, Qinghai, Cai, Hongbing, He, Ruihua, Miao, Yansong, Liew, Timothy C. H., Gao, Wei-bo
Format: Preprint
Veröffentlicht: 2025
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author Chen, Disheng
Dini, Kevin
Rasmita, Abdullah
Huang, Zumeng
Tan, Qinghai
Cai, Hongbing
He, Ruihua
Miao, Yansong
Liew, Timothy C. H.
Gao, Wei-bo
author_facet Chen, Disheng
Dini, Kevin
Rasmita, Abdullah
Huang, Zumeng
Tan, Qinghai
Cai, Hongbing
He, Ruihua
Miao, Yansong
Liew, Timothy C. H.
Gao, Wei-bo
contents Long-life interlayer excitons (IXs) in transition metal dichalcogenide (TMD) heterostructure are promising for realizing excitonic condensates at high temperatures. Critical to this objective is to separate the IX ground state (the lowest energy of IX state) emission from other states emissions. Filtering the IX ground state is also essential in uncovering the dynamics of correlated excitonic states, such as the excitonic Mott insulator. Here, we show that the IX ground state in WSe2/MoS2 heterobilayer can be separated from other states by its spatial profile. The emissions from different moire IX modes are identified by their different energies and spatial distributions, which fits well with the rate-diffusion model for cascading emission. Our results show spatial filtering of the ground state mode and enrich the toolbox to realize correlated states at elevated temperatures.
format Preprint
id arxiv_https___arxiv_org_abs_2507_16180
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spatial filtering of interlayer exciton ground state in WSe2/MoS2 heterobilayer
Chen, Disheng
Dini, Kevin
Rasmita, Abdullah
Huang, Zumeng
Tan, Qinghai
Cai, Hongbing
He, Ruihua
Miao, Yansong
Liew, Timothy C. H.
Gao, Wei-bo
Mesoscale and Nanoscale Physics
Long-life interlayer excitons (IXs) in transition metal dichalcogenide (TMD) heterostructure are promising for realizing excitonic condensates at high temperatures. Critical to this objective is to separate the IX ground state (the lowest energy of IX state) emission from other states emissions. Filtering the IX ground state is also essential in uncovering the dynamics of correlated excitonic states, such as the excitonic Mott insulator. Here, we show that the IX ground state in WSe2/MoS2 heterobilayer can be separated from other states by its spatial profile. The emissions from different moire IX modes are identified by their different energies and spatial distributions, which fits well with the rate-diffusion model for cascading emission. Our results show spatial filtering of the ground state mode and enrich the toolbox to realize correlated states at elevated temperatures.
title Spatial filtering of interlayer exciton ground state in WSe2/MoS2 heterobilayer
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2507.16180