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Spontaneously coherent orbital coupling of counterrotating exciton polaritons in annular perovskite microcavities.


ABSTRACT: Exciton-polariton condensation is regarded as a spontaneous macroscopic quantum phenomenon with phase ordering and collective coherence. By engineering artificial annular potential landscapes in halide perovskite semiconductor microcavities, we experimentally and theoretically demonstrate the room-temperature spontaneous formation of a coherent superposition of exciton-polariton orbital states with symmetric petal-shaped patterns in real space, resulting from symmetry breaking due to the anisotropic effective potential of the birefringent perovskite crystals. The lobe numbers of such petal-shaped polariton condensates can be precisely controlled by tuning the annular potential geometry. These petal-shaped condensates form in multiple orbital states, carrying locked alternating ? phase shifts and vortex-antivortex superposition cores, arising from the coupling of counterrotating exciton-polaritons in the confined circular waveguide. Our geometrically patterned microcavity exhibits promise for realizing room-temperature topological polaritonic devices and optical polaritonic switches based on periodic annular potentials.

SUBMITTER: Wang J 

PROVIDER: S-EPMC7921445 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Spontaneously coherent orbital coupling of counterrotating exciton polaritons in annular perovskite microcavities.

Wang Jun J   Xu Huawen H   Su Rui R   Peng Yutian Y   Wu Jinqi J   Liew Timothy C H TCH   Xiong Qihua Q  

Light, science & applications 20210301 1


Exciton-polariton condensation is regarded as a spontaneous macroscopic quantum phenomenon with phase ordering and collective coherence. By engineering artificial annular potential landscapes in halide perovskite semiconductor microcavities, we experimentally and theoretically demonstrate the room-temperature spontaneous formation of a coherent superposition of exciton-polariton orbital states with symmetric petal-shaped patterns in real space, resulting from symmetry breaking due to the anisotr  ...[more]

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