Researchers develop nonlinear optical crystals by unusual cationic substitution strategy

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Researchers develop nonlinear optical crystals by unusual cationic substitution strategy
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An ideal infrared (IR) nonlinear optical (NLO) crystal must have the advantages of a wide transmittance range, impressive laser-induced damage threshold (LIDT), sufficient birefringence index, bulk single-crystal form, and physicochemical stability.

retrieved 9 October 2023 from https://phys.org/news/2023-10-nonlinear-optical-crystals-unusual-cationic.html

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Researchers develop nonlinear optical crystals by unusual cationic substitution strategyResearchers develop nonlinear optical crystals by unusual cationic substitution strategyAn ideal infrared (IR) nonlinear optical (NLO) crystal must have the advantages of a wide transmittance range, impressive laser-induced damage threshold (LIDT), sufficient birefringence index, bulk single-crystal form, and physicochemical stability.
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