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Stimulated Chiral Light-Matter Interactions in Biological Microlasers

机译:刺激生物微溶剂中的手性浅型相互作用

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Chiral light-matter interactions have emerged as a promising area in biophysics and quantum optics. Remarkable progress in enhancing chiral light-matter interactions have been investigated through passive resonators or spontaneous emission. Nevertheless, the interaction between chiral biomolecules and stimulated emission remains unexplored. Here we introduce the concept of a biological chiral laser by amplifying chiral light-matter interactions in an active resonator through stimulated emission process. Green fluorescent proteins or chiral biomolecules encapsulated in Fabry-Perot microcavity served as the gain material while excited by either left-handed or right-handed circularly polarized pump laser. Owing to the nonlinear pump energy dependence of stimulated emission, significant enhancement of chiral light-matter interactions was demonstrated. Detailed experiments and theory-revealed that lasing dissymmetry factor is determined by molecular absorption dissymmetry factor at its excitation wavelength. Finally, chirality transfer was investigated under stimulated emission process through Forster resonance energy transfer. Our findings elucidate the mechanism of stimulated chiral light-matter interactions, providing new prospects for understanding light-matter interaction in biophysics, chiral sensing, and quantum photonics.
机译:手性浅品相互作用已成为生物物理学和量子光学的有希望的区域。通过被动谐振器或自发排放研究了提高手性浅级相互作用的显着进展。然而,手性生物分子与刺激排放之间的相互作用仍未开发。在这里,我们通过通过刺激的发射过程扩增活性谐振器中的手性闪光相互作用来介绍生物手性激光器的概念。在法布里 - 珀罗微腔中封装的绿色荧光蛋白或手性生物分子用作增益材料,同时由左手或右手圆偏振泵激发激发。由于非线性泵能量依赖于受刺激的排放,证实了手性淡出相互作用的显着提高。详细的实验和理论 - 揭示了激光不对称因子通过其激发波长处的分子吸收不对称因子确定。最后,通过Forster Arsonance能量转移在受刺激的排放过程下调查了手性转移。我们的研究结果阐明了受刺激的手性浅级别相互作用的机制,为理解生物物理学,手性传感和量子光子学中的浅品相互作用提供了新的前景。

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