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利用钙钛矿中的二维手性实现室温激子极化激元的手性光学响应反转与增强

Chiroptical Response Inversion and Enhancement of Room-Temperature Exciton-Polaritons Using 2D Chirality in Perovskites.

作者信息

Wang Zhiyu, Lin Cheng-Chieh, Murata Kei, Kamal Ahmad Syazwan Ahmad, Lin Bo-Wei, Chen Mu-Hsin, Tang Siyi, Ho Ya-Lun, Chen Chia-Chun, Chen Chun-Wei, Daiguji Hirofumi, Ishii Kazuyuki, Delaunay Jean-Jacques

机构信息

Department of Mechanical Engineering, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.

Department of Materials Science and Engineering, National Taiwan University, No. 1, Sec. 4, Roosevelt Rd., Taipei, 10617, Taiwan.

出版信息

Adv Mater. 2023 Oct;35(42):e2303203. doi: 10.1002/adma.202303203. Epub 2023 Sep 13.

Abstract

Although chiral semiconductors have shown promising progress in direct circularly polarized light (CPL) detection and emission, they still face potential challenges. A chirality-switching mechanism or approach integrating two enantiomers is needed to discriminate the handedness of a given CPL; additionally, a large material volume is required for sufficient chiroptical interaction. These two requirements pose significant obstacles to the simplification and miniaturization of the devices. Here, room-temperature chiral polaritons fulfilling dual-handedness functions and exhibiting a more-than-two-order enhancement of the chiroptical signal are demonstrated, by embedding a 40 nm-thick perovskite film with a 2D chiroptical effect into a Fabry-Pérot cavity. By mixing chiral perovskites with different crystal structures, a pronounced 2D chiroptical effect is accomplished in the perovskite film, featured by an inverted chiroptical response for counter-propagating CPL. This inversion behavior matches the photonic handedness switch during CPL circulation in the Fabry-Pérot cavity, thus harvesting giant enhancement of the chiroptical response. Furthermore, affected by the unique quarter-wave-plate effects, the polariton emission achieves a chiral dissymmetry of ±4% (for the emission from the front and the back sides). The room-temperature polaritons with the strong dissymmetric chiroptical interaction shall have implications on a fundamental level and future on-chip applications for biomolecule analysis and quantum computing.

摘要

尽管手性半导体在直接圆偏振光(CPL)检测和发射方面已取得了有前景的进展,但它们仍面临潜在挑战。需要一种整合两种对映体的手性切换机制或方法来区分给定CPL的手性;此外,为了实现足够的旋光相互作用,需要较大的材料体积。这两个要求对器件的简化和小型化构成了重大障碍。在此,通过将具有二维旋光效应的40nm厚钙钛矿薄膜嵌入法布里-珀罗腔中,展示了在室温下实现双手性功能并表现出超过两个数量级的旋光信号增强的手性极化激元。通过混合具有不同晶体结构的手性钙钛矿,在钙钛矿薄膜中实现了显著的二维旋光效应,其特征是对反向传播的CPL具有反向旋光响应。这种反转行为与CPL在法布里-珀罗腔中传播时的光子手性切换相匹配,从而实现了旋光响应的巨大增强。此外,受独特的四分之一波片效应影响,极化激元发射实现了±4%的手性不对称性(对于从正面和背面的发射)。具有强不对称旋光相互作用的室温极化激元在基础层面以及未来用于生物分子分析和量子计算的片上应用中将具有重要意义。

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