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Circularly Polarized Lasing from a Microcavity Filled with Achiral Single-Crystalline Microribbons

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arxiv 2211.12828 v1 pith:VK2UF3S4 submitted 2022-11-23 physics.optics

Circularly Polarized Lasing from a Microcavity Filled with Achiral Single-Crystalline Microribbons

classification physics.optics
keywords laserorganicchiralcircularlyfuturelaserslasingmicrocavity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Organic circularly polarized (CP) lasers have received increasing attention due to their future photoelectric applications. Here, we demonstrate a CP laser from a pure organic crystal-filled microcavity without any chiral molecules or chiral structures. Benefited from the giant anisotropy and excellent laser gain of organic crystals, optical Rashba-Dresselhaus spin-orbit coupling effect can be induced and is conductive to the CP laser in such microcavities. The maximum dissymmetry factor of the CP lasing with opposite helicities reached, is as high as 1.2. Our strategy may provide a new idea for the design of CP lasers towards future 3D laser displays, information storage and other fields.

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