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Active Q-Switching of the Diode-Pumped Two-Frequency ${rm Yb}^{3+}{:}{rm KGd}({rm WO}_{4})_{2}$ Laser

机译:二极管泵浦双频$ {rm Yb} ^ {3 +} {:} {rm KGd}({rm WO} _ {4})_ {2} $激光器的有源Q开关

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摘要

Taking advantage of the spectroscopic anisotropy of the ${rm Yb}^{{3+}}$-doped ${rm KGd}({rm WO}_{4})_{2}$ crystal and its anisotropic laser gain, we have obtained two-frequency and two-polarization lasing in the 1–3 THz range of frequency difference. Inside the laser crystal, the ordinary and extraordinary waves are spatially separated and pumped with an optical bifurcated fiber. The two output waves are merged in a collinear beam suitable for future frequency downconversion. The key contribution of this paper is that two-frequency lasing is demonstrated in active Q-switch regime from an acoustooptic modulator up to 10 kHz repetition rate and leading to simultaneous laser pulses when adequate experimental conditions are fulfilled.
机译:利用掺杂了$ {rm Yb} ^ {{3 +}} $的$ {rm KGd}({rm WO} _ {4})_ {2} $晶体的光谱各向异性及其各向异性的激光增益,我们在频率差的1-3 THz范围内获得了两频和两极化激光。在激光晶体内部,寻常波和异常波在空间上分离并由光学分叉光纤泵浦。这两个输出波合并在共线光束中,适合将来进行下变频。本文的主要贡献在于,从声光调制器以高达10 kHz的重复频率在有源Q开关状态下演示了双频激射,并在满足适当的实验条件时导致了同步激光脉冲。

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