论文标题

全dielectric超级腔的非线性光学加热:通过巨型热功能的有效光对热转化

Nonlinear optical heating of all-dielectric super-cavity: efficient light-to-heat conversion through giant thermorefractive bistability

论文作者

Ryabov, Daniil, Pashina, Olesiya, Zograf, George, Makarov, Sergey, Petrov, Mihail

论文摘要

谐振纳米结构的光学加热是现代纳米摄影学的关键问题之一,根据应用而有害或可取的效果。尽管金属和半导体谐振系统概括为关键耦合条件的金属和半导体共振系统,但仍缺少线性光转换的线性状态,对于金属和半导体谐振系统均已良好研究,但仍缺少在高强度光照射下优化光学加热的明确策略。在这项工作中,我们提出了一个简单的分析模型,以考虑到由加热引起的材料属性变化。它使我们能够为非线性情况得出一个新的一般临界耦合条件,需要在泵浦光频率和谐振方面之间进行反直觉的初始光谱不匹配。根据建议的策略,我们开发了一种优化的设计,用于有效的非线性光学加热,该设计采用圆柱纳米粒子在连续模式下(准BIC或所谓的“超级自由度模式”)支持准绑定状态,并受到入射Azimuthal azimuthal vector Beam的激发。我们的方法为与光学加热和双重性相关的各种非线性实验提供了背景,其中强激光束的自我行动可以改变受辐射的纳米结构的谐振特性。

Optical heating of resonant nanostructures is one of the key issues in modern nanophotonics, being either harmful or desirable effect depending on the applications. Despite a linear regime of light-to-heat conversion is well-studied both for metal and semiconductor resonant systems generalized as critical coupling condition, the clear strategy to optimize optical heating upon high-intensity light irradiation is still missing. In this work, we propose a simple analytical model for such problem taking into account material properties changes caused by the heating. It allows us to derive a new general critical coupling condition for the nonlinear case, requiring counterintuitive initial spectral mismatch between the pumping light frequency and resonant one. Basing on the suggested strategy, we develop an optimized design for efficient nonlinear optical heating, which employs a cylindrical nanoparticle supporting quasi bound state in the continuum mode (quasi-BIC or so-called `super-cavity mode') excited by the incident azimuthal vector beam. Our approach provides a background for various nonlinear experiments related to optical heating and bistability, where self-action of the intense laser beam can change resonant properties of the irradiated nanostructure.

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