Fabry-Pérot open resonant cavities for measuring the dielectric parameters of mm-wave optical materials

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Elwood, Brodi D., Grimes, Paul K., Kovac, John, Eiben, Miranda, Meiners, Grant
Format: Preprint
Veröffentlicht: 2024
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866913570419113984
author Elwood, Brodi D.
Grimes, Paul K.
Kovac, John
Eiben, Miranda
Meiners, Grant
author_facet Elwood, Brodi D.
Grimes, Paul K.
Kovac, John
Eiben, Miranda
Meiners, Grant
contents As millimeter-wave cosmology experiments refine their optical chains, precisely characterizing their optical materials under cryogenic conditions becomes increasingly important. For instance, as the aperture sizes and bandwidths of millimeter-wave receivers increase, the design of antireflection coatings becomes progressively more constrained by an accurate measure of material optical properties in order to achieve forecasted performance. Likewise, understanding dielectric and scattering losses is relevant to photon noise modeling in presently-deploying receivers such as BICEP Array and especially to future experiments such as CMB-S4. Additionally, the design of refractive elements such as lenses necessitates an accurate measure of the refractive index. High quality factor Fabry-Pérot open resonant cavities provide an elegant means for measuring these optical properties. Employing a hemispherical resonator that is compatible with a quick-turnaround 4 Kelvin cryostat, we can measure the dielectric and scattering losses of low-loss materials at both ambient and cryogenic temperatures. We review the design, characterization, and metrological applications of quasioptical cavities commissioned for measuring the dielectric materials in the BICEP3 (95 GHz) and BICEP Array mid-frequency (150 GHz) optics. We also discuss the efforts to improve the finesse of said cavities, for better resolution of degenerate higher order modes, which can provide stronger constraints on cavity parameters and sample material thickness.
format Preprint
id arxiv_https___arxiv_org_abs_2411_01058
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Fabry-Pérot open resonant cavities for measuring the dielectric parameters of mm-wave optical materials
Elwood, Brodi D.
Grimes, Paul K.
Kovac, John
Eiben, Miranda
Meiners, Grant
Optics
Instrumentation and Methods for Astrophysics
As millimeter-wave cosmology experiments refine their optical chains, precisely characterizing their optical materials under cryogenic conditions becomes increasingly important. For instance, as the aperture sizes and bandwidths of millimeter-wave receivers increase, the design of antireflection coatings becomes progressively more constrained by an accurate measure of material optical properties in order to achieve forecasted performance. Likewise, understanding dielectric and scattering losses is relevant to photon noise modeling in presently-deploying receivers such as BICEP Array and especially to future experiments such as CMB-S4. Additionally, the design of refractive elements such as lenses necessitates an accurate measure of the refractive index. High quality factor Fabry-Pérot open resonant cavities provide an elegant means for measuring these optical properties. Employing a hemispherical resonator that is compatible with a quick-turnaround 4 Kelvin cryostat, we can measure the dielectric and scattering losses of low-loss materials at both ambient and cryogenic temperatures. We review the design, characterization, and metrological applications of quasioptical cavities commissioned for measuring the dielectric materials in the BICEP3 (95 GHz) and BICEP Array mid-frequency (150 GHz) optics. We also discuss the efforts to improve the finesse of said cavities, for better resolution of degenerate higher order modes, which can provide stronger constraints on cavity parameters and sample material thickness.
title Fabry-Pérot open resonant cavities for measuring the dielectric parameters of mm-wave optical materials
topic Optics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2411.01058