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具有金包覆三角形银纳米结构的胶体等离子体随机激光器中的复制对称性破缺

Replica symmetry breaking in a colloidal plasmonic random laser with gold-coated triangular silver nanostructures.

作者信息

Dey Arindam, Pramanik Ashim, Mondal Koushik, Biswas Subrata, Chatterjee Udit, Messina Fabrizio, Kumbhakar Pathik

出版信息

Opt Lett. 2023 Aug 1;48(15):4141-4144. doi: 10.1364/OL.493987.

Abstract

Plasmonic random lasers have drawn significant attention recently due to their versatility, low threshold, and the possibility of achieving tunable and coherent/incoherent outputs. However, in this Letter, the phenomenon of replica symmetry breaking is reported in intensity fluctuations of a rarely used colloidal plasmonic random laser (RL) illumination. Triangular nanosilver scatter particles produced incoherent RL action when used in a dimethylformamide (DMF) environment in a Rhodamine-6G gain medium. The use of gold-coated triangular nanosilver as the scatterer in place of triangular nanosilver offered a dual contribution of scattering and lower photo-reabsorption, which caused a reduction in the lasing threshold energy of 39% compared to that obtained with the latter. Further, due to its long-term photostability and chemical properties, a phase transition from the photonic paramagnetic to the glassy phase is observed experimentally in the RL system used. Interestingly, the transition occurs at approximately the lasing threshold value, which is a consequence of stronger correlation of modal behaviors at high input pump energies.

摘要

由于其多功能性、低阈值以及实现可调谐和相干/非相干输出的可能性,等离子体随机激光器最近引起了广泛关注。然而,在本信函中,报道了在一种很少使用的胶体等离子体随机激光器(RL)照明的强度波动中出现的复制对称性破缺现象。在罗丹明 - 6G增益介质的二甲基甲酰胺(DMF)环境中使用时,三角形纳米银散射颗粒产生了非相干RL作用。使用金包覆的三角形纳米银作为散射体代替三角形纳米银,提供了散射和较低光吸收的双重作用,与后者相比,这使得激光阈值能量降低了39%。此外,由于其长期的光稳定性和化学性质,在所用的RL系统中通过实验观察到了从光子顺磁相到玻璃相的相变。有趣的是,该转变大约发生在激光阈值处,这是高输入泵浦能量下模态行为更强相关性的结果。

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