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Improved idler beam quality via simultaneous parametric oscillation and signal-to-idler conversion

机译:通过同时进行参数振荡和信噪比转换,提高惰轮光束质量

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We report on an improvement of idler beam quality in a singly resonant optical parametric oscillator (OPO), where the resonant signal is converted to the idler via an additional difference frequency generation (DFG) process. The two processes are phase matched simultaneously by a quasi-periodically poled nonlinear crystal. Whereas back-conversion of the signal and idler to the pump frequency distorts the idler beam in a standard OPO, in a quasi-periodic OPO the DFG process reduces the signal intensity, leading to suppression of back-conversion and, hence, improvement in idler beam quality. Indeed, the experimental results show under the same pump power a significant improvement in idler beam quality for the quasi-periodic OPO (1 ≤ M~2 ≤ 2.1) as compared with the standard OPO (3.2 ≤ M~2 ≤ 5.3).
机译:我们报告了单谐振光学参量振荡器(OPO)中惰轮光束质量的改善,其中谐振信号通过附加的差频生成(DFG)过程转换为惰轮。准周期极化的非线性晶体同时对这两个过程进行相位匹配。信号和惰轮向泵浦频率的反向转换会使标准OPO中的惰轮束失真,而在准周期OPO中,DFG工艺会降低信号强度,从而抑制了反向转换,因此改善了惰轮光束质量。实际上,实验结果表明,在相同的泵浦功率下,准周期OPO(1≤M〜2≤2.1)与标准OPO(3.2≤M〜2≤5.3)相比,闲置光束质量有了显着改善。

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