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Pulsed Bessel-Gauss beams: a depleted wave model for type II second-harmonic generation

机译:贝塞尔高斯脉冲光束:II型二次谐波产生的耗尽波模型

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摘要

In this work, a three-dimensional and time-dependent nonlinear wave model to describe the generation of pulsed Bessel-Gauss second-harmonic waves (SHWs) is presented. Three coupled equations, two for ordinary and extraordinary fundamental waves and one for extraordinary SHWs, describing type II second-harmonic generation (SHG) in a KTiOPO_4 (KTP) crystal were solved by considering the depletion of fundamental waves (FWs). The results examined the validity of nondepleted wave approximation against the energy of pulses, beam spot size, and interaction length. It was shown that for pulses with spot sizes of ω_f = 80 μm and energy of 0.8j, the nonlinear interaction was accomplished over a distance of ~5 mm. Therefore, for KTP crystals with lengths longer than 5 mm, the nondepleted wave approximation can no longer be valid. To be valid, the crystal must be shorter than the interaction length, i.e., 5 mm.
机译:在这项工作中,提出了一个三维且依赖于时间的非线性波模型,用于描述脉冲贝塞尔高斯二次谐波(SHW)的产生。通过考虑基波(FW)的消耗,求解了三个耦合方程,两个方程分别用于描述普通和非常规基波,一个用于非常规SHW,它们描述了KTiOPO_4(KTP)晶体中的II型二次谐波产生(SHG)。结果检验了针对脉冲能量,束斑大小和相互作用长度的非损耗波近似的有效性。结果表明,对于光斑大小为ω_f= 80μm且能量为0.8j的脉冲,在〜5 mm的距离内完成了非线性相互作用。因此,对于长度大于5 mm的KTP晶体,无损耗波近似不再有效。为了有效,晶体必须短于相互作用长度,即5mm。

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