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Self-frequency-doubled vibronic yellow Yb:YCOB laser at the wavelength of 570 nm

机译:波长为570 nm的自倍频振动黄色Yb:YCOB黄激光

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A watt-level self-frequency-doubled yellow laser at the 570 nm wavelength was realized by taking advantage of the vibronic emission of a Yb3+ doped calcium yttrium oxoborate (Yb: YCOB) crystal cut along the optimized direction out of the principal planes with the maximum effective nonlinear coefficient. Fluorescence spectroscopic properties of Yb: YCOB were studied, which showed that it had broad and anisotropic vibronic emission with a small peak at similar to 1130 nm. By suppressing the electronic emission, the polarized vibronic Yb: YCOB radiation was realized with the fundamental wavelength shifting from 1130 nm to 1140 nm. By employing the self-frequency-doubling behavior of Yb:YCOB, the self-frequency-doubled yellow laser was achieved with a maximum output power of 1.08 W at 570 nm. This work provides an unprecedented and efficient way to generate yellow lasers with a compact microchip structure that may have promising applications in some regimes including medicine, entertainment, and scientific research. (C) 2016 Optical Society of America
机译:通过利用沿优化方向切割的Yb3 +掺杂的氧化钇钇硼酸钙(Yb:YCOB)晶体的振动发射,实现了570 nm波长的瓦特级自倍频黄色激光。最大有效非线性系数。研究了Yb:YCOB的荧光光谱性质,表明它具有宽广的各向异性振动电子发射,在接近1130 nm处有一个小峰。通过抑制电子发射,实现了偏振振动的Yb:YCOB振动,其基本波长从1130 nm移到1140 nm。通过使用Yb:YCOB的自倍频特性,实现了自倍频黄色激光,在570 nm处的最大输出功率为1.08W。这项工作提供了一种空前有效的方法来生成具有紧凑微芯片结构的黄色激光,在某些领域,包括医学,娱乐和科学研究中,它们可能具有广阔的应用前景。 (C)2016美国眼镜学会

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