Lateral beam shifts and depolarization upon oblique reflection from dielectric mirrors

Fuente: arXiv
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Auteurs principaux: Xiao, Yuzhe, Phuttitarn, Linipun, Graham, Trent Michael, Wan, Chenghao, Saffman, Mark, Kats, Mikhail A.
Format: Preprint
Publié: 2022
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author Xiao, Yuzhe
Phuttitarn, Linipun
Graham, Trent Michael
Wan, Chenghao
Saffman, Mark
Kats, Mikhail A.
author_facet Xiao, Yuzhe
Phuttitarn, Linipun
Graham, Trent Michael
Wan, Chenghao
Saffman, Mark
Kats, Mikhail A.
contents Dielectric mirrors comprising thin-film multilayers are widely used in optical experiments because they can achieve substantially higher reflectance compared to metal mirrors. Here we investigate potential problems that can arise when dielectric mirrors are used at oblique incidence, in particular for focused beams. We found that light beams reflected from dielectric mirrors can experience lateral beam shifts, beam-shape distortion, and depolarization, and these effects have a strong dependence on wavelength, incident angle, and incident polarization. Because vendors of dielectric mirrors typically do not share the particular layer structure of their products, we designed and simulated several dielectric-mirror stacks, and then also measured the lateral beam shift from two commercial dielectric mirrors and one coated metal mirror. We hope that this paper brings awareness of the tradeoffs between dielectric mirrors and front-surface metal mirrors in certain optics experiments, and suggest that vendors of dielectric mirrors provide information about beam shifts, distortion, and depolarization when their products are used at oblique incidence.
format Preprint
id arxiv_https___arxiv_org_abs_2211_13927
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Lateral beam shifts and depolarization upon oblique reflection from dielectric mirrors
Xiao, Yuzhe
Phuttitarn, Linipun
Graham, Trent Michael
Wan, Chenghao
Saffman, Mark
Kats, Mikhail A.
Optics
Applied Physics
Dielectric mirrors comprising thin-film multilayers are widely used in optical experiments because they can achieve substantially higher reflectance compared to metal mirrors. Here we investigate potential problems that can arise when dielectric mirrors are used at oblique incidence, in particular for focused beams. We found that light beams reflected from dielectric mirrors can experience lateral beam shifts, beam-shape distortion, and depolarization, and these effects have a strong dependence on wavelength, incident angle, and incident polarization. Because vendors of dielectric mirrors typically do not share the particular layer structure of their products, we designed and simulated several dielectric-mirror stacks, and then also measured the lateral beam shift from two commercial dielectric mirrors and one coated metal mirror. We hope that this paper brings awareness of the tradeoffs between dielectric mirrors and front-surface metal mirrors in certain optics experiments, and suggest that vendors of dielectric mirrors provide information about beam shifts, distortion, and depolarization when their products are used at oblique incidence.
title Lateral beam shifts and depolarization upon oblique reflection from dielectric mirrors
topic Optics
Applied Physics
url https://arxiv.org/abs/2211.13927