透明的含钠的材料对薄膜的视觉特性的影响。

Ahmad Omar
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引用次数: 0

摘要

在300 ~ 1100nm入射光波长范围内,通过结合剂、GaSe和GaSe/粘合剂界面的光学反射率和透射率研究了钠基透明结合剂对真空蒸发GaSe薄膜光学性能的影响。对三种样品的吸收系数谱分析表明,GaSe的直接允许电子跃迁能带隙有明显的红移。此外,在~ 0.25 eV下观察到的GaSe带尾态在粘结剂涂层后消失。粘结剂包覆的GaSe薄膜将GaSe的能带隙屏蔽为能带隙中的能带尾态。另一方面,对粘结剂包覆的GaSe薄膜的介电光谱分析表明,双层的光学导电性异常增强。根据洛伦兹理论建立的光学电导率模型显示,粘结剂涂层后,GaSe的自由载流子密度、漂移迁移率、电子碰撞时间和有效质量都发生了显著变化。研究结果表明,钠基粘合剂对光电敏感的GaSe薄膜具有完全透明的光学窗口作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Sodium Based Transparent Binders on the Optical Properties of GaSe Thin Films = تأثير المواد الرابطة الشفافة القائمة على الصوديوم في الخصائص البصرية لأغشية GaSe الرقيقة
The effect of sodium based transparent binders on the optical properties of vacuum evaporated GaSe thin films are explored by means of optical reflectivity and transmittance of the binder, GaSe and GaSe/binder interfaces in the incident light wavelength range of 300-1100 nm. The analysis of the absorption coefficient spectra for the three samples revealed a pronounced red shift in the direct allowed electron transition's energy band gap of the GaSe. In addition, the band tail states of GaSe, which was observed at ~ 0.25 eV, disappeared upon binder coating. The binder coated GaSe films screen the energy band gap of the GaSe as band tail state in its energy band gap. On the other hand, the analysis of the dielectric spectra of the binder coated GaSe thin films displayed an abnormal enhancement in the optical conductivity of the double layer. The optical conductivity, which was modeled in accordance to Lorentz theory, displayed significant change in the free carrier density, the drift mobility, the electron collision time and the effective mass of GaSe upon binder coating. The study ends with the result that the sodium-based binder behaves as a fully transparent optical window to the optoelectronically sensitive GaSe thin films.
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