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All-prism achromatic phase matching for tunable second-harmonic generation

机译:全棱镜消色差相位匹配可调谐二次谐波

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Achromatic phase matching (APM) involves dispersing the light entering a nonlinear crystal so that a wide range of wavelengths is simultaneously phase matched. We constructed an APM apparatus consisting of six prisms, the final dispersion angle of which was optimized to match to second order in wavelength the type I phase-matching angle of# barium borate (BBO). With this apparatus,we doubled tunable fundamental light from 620 to 700 nm in wavelength using a 4-mm-long BBO crystal.An analogous set of six prisms after the BBO crystal, optimized to second order in second-harmonic wave length, realigned the output second-harmonic beams. Computer simulations predict that adjustment of a single prism can compensate angular misalignment of any or all the prisms before the crystal,and similarly for the prisms after the crystal. We demonstrated such compensation with the experimental device. The simulations also indicate that the phase-matching wavelength band can be shifted and optimized for different crystal lengths. # 1999 Optical Society of America OCIS codes: 190.2620, 190.4360, 190.4400.
机译:消色差相位匹配(APM)涉及分散进入非线性晶体的光,以便同时对宽范围的波长进行相位匹配。我们构建了一个由六个棱镜组成的APM设备,对它的最终色散角进行了优化,以使其与波长#硼酸钡(BBO)的I型相位匹配角相匹配。使用此设备,我们使用4毫米长的BBO晶体将波长从620可调到700 nm的可调谐基波增加了一倍。在BBO晶体之后的一组类似的六个棱镜被优化为二次谐波波长,从而将其重新对准输出二次谐波光束。计算机模拟预测,单个棱镜的调整可以补偿晶体之前或之后的任何棱镜的角度失准。我们用实验装置证明了这种补偿。仿真还表明,可以针对不同的晶体长度移动和优化相位匹配的波长带。 #1999美国光学学会OCIS编码:190.2620、190.4360、190.4400。

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