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Rough Fabry-Perot cavity: a vastly multi-scale numerical problem

Rough Fabry-Perot cavity: a vastly multi-scale numerical problem

来源:Arxiv_logoArxiv
英文摘要

A commercial Fabry-Perot laser diode is characterized by highly disproportionate dimensions, which poses a significant numerical challenge, even for state-of-the-art tools. This challenge is exacerbated when one of the cavity mirrors is rough-ened, as is the case when fabricating random laser diodes. Such a system involves length scales from several hundred mi-crometres (length) to a few nanometres (roughness) all of which are relevant when studying optical properties in the visi-ble. While involving an extreme range of dimensions, these cavities cannot be treated through statistical approaches such as those used with self-similar fractal structures known to show well-studied properties. Here we deploy numerical meth-ods to compute cavity modes and show how random corrugations of the Fabry-Perot cavity wall affect statistical proper-ties of their spectral features. Our study constitutes a necessary first step in developing technologically essential devices for photonic computation and efficient speckle-free illumination.

Cefe López、Tetiana Slipchenko、Jaime Abad-arredondo、Antonio Consoli、Francisco J García Vidal、Antonio I Fernández-domínguez、Pedro David García

物理学

Cefe López,Tetiana Slipchenko,Jaime Abad-arredondo,Antonio Consoli,Francisco J García Vidal,Antonio I Fernández-domínguez,Pedro David García.Rough Fabry-Perot cavity: a vastly multi-scale numerical problem[EB/OL].(2025-07-22)[2025-08-10].https://arxiv.org/abs/2507.16607.点此复制

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