Photochemical reaction enabling the engineering of photonic spin-orbit coupling in organic-crystal optical microcavities

Q. Liang, X. Ma, J. Ren, T. Long, C. Gu, C. An, H. Fu, S. Schumacher, Q. Liao, ArXiv:2309.07652 (2023).

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Liang, Qian; Ma, Xuekai; Ren, Jiahuan; Long, Teng; Gu, Chunling; An, Cunbin; Fu, Hongbing; Schumacher, Stefan; Liao, Qing
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The control and active manipulation of spin-orbit coupling (SOC) in photonic systems is fundamental in the development of modern spin optics and topological photonic devices. Here, we demonstrate the control of an artificial Rashba-Dresselhaus (RD) SOC mediated by photochemical reactions in a microcavity filled with an organic single-crystal of photochromic phase-change character. Splitting of the circular polarization components of the optical modes induced by photonic RD SOC is observed experimentally in momentum space. By applying an ultraviolet light beam, we control the spatial molecular orientation through a photochemical reaction and with that we control the energies of the photonic modes. This way we realize a reversible conversion of spin-splitting of the optical modes with different energies, leading to an optically controlled switching between circularly and linearly polarized emission from our device. Our strategy of in situ and reversible engineering of SOC induced by a light field provides a promising approach to actively design and manipulate synthetic gauge fields towards future on-chip integration in photonics and topological photonic devices.
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arXiv:2309.07652
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Liang Q, Ma X, Ren J, et al. Photochemical reaction enabling the engineering of photonic spin-orbit  coupling in organic-crystal optical microcavities. arXiv:230907652. Published online 2023.
Liang, Q., Ma, X., Ren, J., Long, T., Gu, C., An, C., Fu, H., Schumacher, S., & Liao, Q. (2023). Photochemical reaction enabling the engineering of photonic spin-orbit  coupling in organic-crystal optical microcavities. In arXiv:2309.07652.
@article{Liang_Ma_Ren_Long_Gu_An_Fu_Schumacher_Liao_2023, title={Photochemical reaction enabling the engineering of photonic spin-orbit  coupling in organic-crystal optical microcavities}, journal={arXiv:2309.07652}, author={Liang, Qian and Ma, Xuekai and Ren, Jiahuan and Long, Teng and Gu, Chunling and An, Cunbin and Fu, Hongbing and Schumacher, Stefan and Liao, Qing}, year={2023} }
Liang, Qian, Xuekai Ma, Jiahuan Ren, Teng Long, Chunling Gu, Cunbin An, Hongbing Fu, Stefan Schumacher, and Qing Liao. “Photochemical Reaction Enabling the Engineering of Photonic Spin-Orbit  Coupling in Organic-Crystal Optical Microcavities.” ArXiv:2309.07652, 2023.
Q. Liang et al., “Photochemical reaction enabling the engineering of photonic spin-orbit  coupling in organic-crystal optical microcavities,” arXiv:2309.07652. 2023.
Liang, Qian, et al. “Photochemical Reaction Enabling the Engineering of Photonic Spin-Orbit  Coupling in Organic-Crystal Optical Microcavities.” ArXiv:2309.07652, 2023.

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