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The energy and spectral characteristics of a room-temperature pulsed laser on a ZnS:Fe2+ polycrystal

机译:ZnS:Fe2 +多晶上室温脉冲激光的能量和光谱特性

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The energy and spectral characteristics of a laser on a ZnS:Fe2+ polycrystal operating at room temperature have been studied. The laser was pumped by a non-chain electro-discharge HF laser with a full-width at half-maximum pulse duration of similar to 140 ns. The diameter of the pumping radiation spot on the crystal surface was 3.8 mm. The two-sided diffuse doping of a polycrystalline CVD-ZnS sample with the surfaces preliminarily coated by high-purity iron films was performed in the process of hot isostatic pressing ( HIP) in an argon atmosphere at a pressure of 100 MPa and temperature of 1290 degrees C. Increasing the duration of the HIP treatment from 54 h to 72 h made it possible to obtain twice the doping depth, and correspondingly, twice the length of active medium. As a result, the slope laser efficiency with respect to the absorbed energy was raised by a factor of 1.75 as compared to the value obtained in our earlier work with a polycrystalline sample. The generation energy was 25 mJ at a slope efficiency of eta(slope) = 35%. It was established that the generation spectra of the laser with a non-selective resonator have a linear structure with intervals between the neighboring lines of delta(lambda) approximate to 6 divided by 8 nm, which is spurious for solid-state lasers. The spectral structure observed is not related to the elements inside the resonator, which might form Fabry-Perot interferometers.
机译:研究了在室温下工作的ZnS:Fe2 +多晶上的激光的能量和光谱特性。激光由非链式放电HF激光泵浦,其半峰全宽脉冲宽度约为140 ns。晶体表面上的泵浦辐射点的直径为3.8mm。在氩气气氛中,在100 MPa的压力和1290的温度下,通过热等静压(HIP)过程,对预先用高纯度铁膜覆盖了表面的多晶CVD-ZnS样品进行了双面扩散掺杂。 HIP处理的持续时间从54小时增加到72小时,可以获得两倍的掺杂深度,相应地,两倍的活性介质长度。结果,与我们先前对多晶样品的研究中获得的值相比,相对于吸收能量的倾斜激光器效率提高了1.75倍。在η(斜率)= 35%的斜率效率下,发电能量为25 mJ。已经确定,具有非选择性谐振器的激光器的产生光谱具有线性结构,其在相邻的Δλ之间的间隔近似为6除以8nm,这对于固态激光器是虚假的。观察到的光谱结构与谐振器内部的元件无关,谐振器内部的元件可能会形成Fabry-Perot干涉仪。

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