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Effect of terbium gallium garnet crystal orientation on the isolation ratio of a Faraday isolator at high average power.

作者信息

Khazanov Efim, Andreev Nicolay, Palashov Oleg, Poteomkin Anatoly, Sergeev Alexander, Mehl Oliver, Reitze David H

机构信息

Institute of Applied Physics, Nizhny Novgorod, Russia.

出版信息

Appl Opt. 2002 Jan 20;41(3):483-92. doi: 10.1364/ao.41.000483.

DOI:10.1364/ao.41.000483
PMID:11905575
Abstract

We present a comprehensive and systematic investigation of the fundamental physical limitations of Faraday isolation performance at high average powers that are due to thermally induced birefringence. First, the operation of various Faraday isolator designs by use of arbitrary orientation of cubic magneto-optic crystals is studied theoretically. It is shown that, for different Faraday isolator designs, different crystal orientations can optimize the isolation ratio. Second, thermo-optic and photoelastic constants for terbium gallium garnet crystals grown by different manufacturers were measured. Measurements of self-induced depolarization are made for various orientations of crystallographic axes. The measurements are in good agreement with our theoretical predictions. Based on our results, it is possible to select a crystal orientation that optimizes isolation performance at high average powers, resulting in a 5-dB enhancement over nonoptimized orientations.

摘要

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