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首页> 外文期刊>Optics and Spectroscopy >Transformation of Optical Properties of Crystal Media (KGW, YVO_4) Exposed to Quasi-Continuous Laser Radiation in the Range of the Transmission Band of the Medium
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Transformation of Optical Properties of Crystal Media (KGW, YVO_4) Exposed to Quasi-Continuous Laser Radiation in the Range of the Transmission Band of the Medium

机译:介质传输带范围内准连续激光辐射下晶体介质(KGW,YVO_4)光学特性的转变

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We present data from an investigation of the properties of the blue (475 nm) and green (520-560 nm) emissions that arise from KGW and YVO_4 crystals upon excitation into the transmission band of the medium by continuous infrared laser radiation the power density of which is in the kilowatt range. As distinct from standard luminescence, the two emissions are narrowband, have a structure, and show a nonlinear character. In the case of blue emission, it is noted that, simultaneously with laser radiation, the crystal experiences a significant action of Raman generation. We demonstrate the excitation of the blue emission by the laser radiation alone and present its dynamic characteristics, showing that its intrinsic time differs from the corresponding times of the Raman and laser generations. Our results show that the green emission has an up-conversion nature with the several photons excitation of residual low-concentration erbium ions. We report that the band intensity ratio of the upconversion luminescence of erbium sharply changes with increasing excitation intensity. The nonlinear interaction that is developed in KGW is accompanied by transformation of the transmission. It is concluded that the investigated processes develop in undoped KGW and YVO_4 crystals as a result of a prolonged exposure of the medium to the laser radiation, which leads to a change in its properties.
机译:我们提供的数据来自对KGW和YVO_4晶体通过连续红外激光辐射激发到介质的传输带激发时产生的蓝光(475 nm)和绿光(520-560 nm)发射的特性的研究在千瓦范围内。与标准发光不同,这两种发射是窄带的,具有结构的并且显示非线性特性。在发出蓝光的情况下,应注意的是,与激光辐射同时,晶体经历拉曼产生的重要作用。我们演示了仅由激光辐射激发的蓝色发射,并显示了其动态特性,表明其固有时间不同于拉曼光谱和激光世代的对应时间。我们的结果表明,绿色光发射具有残余低浓度离子的几个光子激发的上转换性质。我们报道that的上转换发光的带强度比随着激发强度的增加而急剧变化。在KGW中开发的非线性相互作用伴随着传输的转换。结论是,由于介质长时间暴露于激光辐射,导致了其性质的改变,未掺杂的KGW和YVO_4晶体中出现了所研究的过程。

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