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Index of Refraction and Absorption Coefficient Spectraudof Paratellurite in the Terahertz Region

机译:折射率和吸收系数谱太赫兹地区的卫星陨石

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摘要

Index of refraction and absorption coefficient spectra of pure paratellurite (α-TeO2) crystal as a potential material for terahertz (THz) applications were determined in the 0.25–2 THz frequency range at room temperature by THz time domain spectroscopy (THz-TDS). The investigation was performed with beam polarization both parallelud(extraordinary polarization) and perpendicular (ordinary polarization) to the optical axis [001] of the crystal. Similarly to the visible spectral range, positive birefringence was observed in the THz range as well. It was shown that the values of the refractive index for extraordinary polarization are higher and show significantly larger dispersion than for the ordinary one. The absorption coefficient values are also larger for extraordinary polarization. The measured values were fitted by theoretical curves derived from the complex dielectric function containing independent terms of Lorentz oscillators due toudphonon-polariton resonances. The results are compared with earlier publications, and the observed significant discrepancies are discussed.
机译:通过太赫兹时域光谱法(THz-TDS)在室温下的0.25-2 THz频率范围内确定了纯太石(α-TeO2)晶体作为太赫兹(THz)应用的潜在材料的折射率和吸收系数谱。使用与晶体的光轴[001]平行/ ud(超偏振)和垂直(普通偏振)的光束偏振来进行研究。与可见光谱范围相似,在THz范围内也观察到正双折射。结果表明,与普通偏振相比,非寻常偏振的折射率值更高,并且色散明显更大。对于非常规极化,吸收系数值也较大。测量值通过源自复介电函数的理论曲线进行拟合,该复数介电函数由于 udphonon-极化子共振而包含独立的Lorentz振荡器项。将结果与早期出版物进行了比较,并对观察到的重大差异进行了讨论。

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