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Spatial coherence of room-temperature monolayer WSe\\(_2\\) exciton-polaritons in a trap
by
Esmann, Martin
, Rupprecht, Christoph
, Taniguchi, Takashi
, Kavokin, Alexey V
, Lackner, Lukas
, Eilenberger, Falk
, Höfling, Sven
, Hangyong Shan
, Antón-Solanas, Carlos
, Sedov, Evgeny
, Tongay, Sefaattin
, Kunte, Nils
, Schneider, Christian
, Beierlein, Johannes
, Klembt, Sebastian
, Watanabe, Kenji
, Knopf, Heiko
, Yumigeta, Kentaro
, Han, Bo
in
Coherent light
/ Coupling
/ Emitters
/ Excitons
/ Light
/ Light emission
/ Long range order
/ Luminous intensity
/ Polaritons
/ Room temperature
2021
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Spatial coherence of room-temperature monolayer WSe\\(_2\\) exciton-polaritons in a trap
by
Esmann, Martin
, Rupprecht, Christoph
, Taniguchi, Takashi
, Kavokin, Alexey V
, Lackner, Lukas
, Eilenberger, Falk
, Höfling, Sven
, Hangyong Shan
, Antón-Solanas, Carlos
, Sedov, Evgeny
, Tongay, Sefaattin
, Kunte, Nils
, Schneider, Christian
, Beierlein, Johannes
, Klembt, Sebastian
, Watanabe, Kenji
, Knopf, Heiko
, Yumigeta, Kentaro
, Han, Bo
in
Coherent light
/ Coupling
/ Emitters
/ Excitons
/ Light
/ Light emission
/ Long range order
/ Luminous intensity
/ Polaritons
/ Room temperature
2021
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Spatial coherence of room-temperature monolayer WSe\\(_2\\) exciton-polaritons in a trap
by
Esmann, Martin
, Rupprecht, Christoph
, Taniguchi, Takashi
, Kavokin, Alexey V
, Lackner, Lukas
, Eilenberger, Falk
, Höfling, Sven
, Hangyong Shan
, Antón-Solanas, Carlos
, Sedov, Evgeny
, Tongay, Sefaattin
, Kunte, Nils
, Schneider, Christian
, Beierlein, Johannes
, Klembt, Sebastian
, Watanabe, Kenji
, Knopf, Heiko
, Yumigeta, Kentaro
, Han, Bo
in
Coherent light
/ Coupling
/ Emitters
/ Excitons
/ Light
/ Light emission
/ Long range order
/ Luminous intensity
/ Polaritons
/ Room temperature
2021
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Spatial coherence of room-temperature monolayer WSe\\(_2\\) exciton-polaritons in a trap
Paper
Spatial coherence of room-temperature monolayer WSe\\(_2\\) exciton-polaritons in a trap
2021
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Overview
The emergence of spatial and temporal coherence of light emitted from solid-state systems is a fundamental phenomenon, rooting in a plethora of microscopic processes. It is intrinsically aligned with the control of light-matter coupling, and canonical for laser oscillation. However, it also emerges in the superradiance of multiple, phase-locked emitters, and more recently, coherence and long-range order have been investigated in bosonic condensates of thermalized light, as well as in exciton-polaritons driven to a ground state via stimulated scattering. Here, we experimentally show that the interaction between photons in a Fabry-Perot microcavity and excitons in an atomically thin WSe\\(_2\\) layer is sufficient such that the system enters the hybridized regime of strong light-matter coupling at ambient conditions. Via Michelson interferometry, we capture clear evidence of increased spatial and temporal coherence of the emitted light from the spatially confined system ground-state. The coherence build-up is accompanied by a threshold-like behaviour of the emitted light intensity, which is a fingerprint of a polariton laser effect. Valley-physics is manifested in the presence of an external magnetic field, which allows us to manipulate K and K' polaritons via the Valley-Zeeman-effect. Our findings are of high application relevance, as they confirm the possibility to use atomically thin crystals as simple and versatile components of coherent light-sources, and in valleytronic applications at room temperature.
Publisher
Cornell University Library, arXiv.org
Subject
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