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Measurement of optical nonlinearity by antiresonant ring interferometric nonlinear spectroscopic (ARINS) technique

机译:用反共振环干涉非线性光谱(ARINS)技术测量光学非线性

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We have reported the measurement of third-order optical nonlinearity by antiresonant ring interferometric nonlinear spectroscopic (ARINS) technique and discussed its usefulness over other popular measuring techniques such as Z-scan, degenerate four wave mixing (DFWM) and third harmonic generation (THG). The measurement has been simulated theoretically by taking different numerical values as well as sign of delta, which is a key parameter of ARINS. The technique has been benchmarked using toluene and the theoretical simulation has been substantiated experimentally by measuring the nonlinear optical coefficients (n (2) and beta) of two different samples. The disadvantages of the technique have also been discussed. However, a number of advantages of ARINS override its disadvantages and therefore, ARINS may be preferred over other measuring techniques for the measurement of nonlinear optical parameters.
机译:我们已经报告了通过反共振环干涉非线性光谱(ARINS)技术测量三阶光学非线性的方法,并讨论了其在其他流行测量技术(例如Z扫描,简并四波混频(DFWM)和三次谐波产生(THG))中的实用性。理论上通过采用不同的数值和增量符号(是ARINS的关键参数)对测量进行了模拟。该技术已经使用甲苯进行了基准测试,并且通过测量两个不同样品的非线性光学系数(n(2)和beta)在实验上证实了理论模拟。还讨论了该技术的缺点。但是,ARINS的许多优点克服了其缺点,因此,对于非线性光学参数的测量,ARINS可能优于其他测量技术。

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