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Temperature dependent refractive index and absorption coefficient of congruent lithium niobate crystals in the terahertz range

机译:太赫兹范围内的全铌酸锂晶体的温度相关折射率和吸收系数

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摘要

Optical rectification with tilted pulse fronts in lithium niobate crystals is one of the most promising methods to generate terahertz (THz) radiation. In order to achieve higher optical-to-THz energy efficiency, it is necessary to cryogenically cool the crystal not only to decrease the linear phonon absorption for the generated THz wave but also to lengthen the effective interaction length between infrared pump pulses and THz waves. However, the refractive index of lithium niobate crystal at lower temperature is not the same as that at room temperature, resulting in the necessity to re-optimize or even re-build the tilted pulse front setup. Here, we performed a temperature dependent measurement of refractive index and absorption coefficient on a 6.0 mol% MgO-doped congruent lithium niobate wafer by using a THz time-domain spectrometer (THz-TDS). When the crystal temperature was decreased from 300 K to 50 K, the refractive index of the crystal in the extraordinary polarization decreased from 5.05 to 4.88 at 0.4 THz, resulting in ~1° change for the tilt angle inside the lithium niobate crystal. The angle of incidence on the grating for the tilted pulse front setup at 1030 nm with demagnification factor of −0.5 needs to be changed by 3°. The absorption coefficient decreased by 60% at 0.4 THz. These results are crucial for designing an optimum tilted pulse front setup based on lithium niobate crystals.
机译:铌酸锂晶体中具有倾斜脉冲前沿的光整流是产生太赫兹(THz)辐射的最有前途的方法之一。为了获得更高的光-太赫兹能量效率,有必要对晶体进行低温冷却,这不仅是为了降低所产生太赫兹波的线性声子吸收,而且还需要延长红外泵浦脉冲与太赫兹波之间的有效相互作用长度。但是,铌酸锂晶体在较低温度下的折射率与室温下的折射率不同,因此需要重新优化甚至重建倾斜脉冲前设置。在这里,我们通过使用THz时域光谱仪(THz-TDS)在6.0 mol%的MgO掺杂全铌酸锂晶片上进行了折射率和吸收系数的温度依赖性测量。当晶体温度从300 K降低到50 K时,在0.4 THz时,非寻常偏振态的晶体折射率从5.05降低到4.88,导致铌酸锂晶体内部的倾斜角变化约1°。倾斜脉冲前部设置在1030 nm时的缩小角为-0.5时,光栅上的入射角需要改变3°。吸收系数在0.4 THz时降低了60%。这些结果对于基于铌酸锂晶体设计最佳的倾斜脉冲前沿设置至关重要。

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