Measurement of photoluminescence from a twisted-nematic liquid crystal/dye cell for an application in an energy-harvesting display

Masamichi Ohta, S. Itaya, Shintaro Ozawa, Nada Dianah Binti M. Azmi, I. Fujieda
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Abstract

One can convert a Luminescent Solar Concentrator (LSC) to an energy-harvesting display by scanning a laser beam on it. By incorporating a guest-host system of liquid crystal (LC) and dye materials in an LSC, the power of photoluminescence (PL) utilized for either display or energy-harvesting can be adjusted to the changes in ambient lighting conditions. We have measured basic characteristics of an LC/dye cell with twisted-nematic (TN) alignment. These are absorption of the laser light, PL radiation pattern, contrast of luminance, spreading of the PL generated by a narrow laser beam, and their dependencies on the bias. The results are similar to those of the LC/dye cell with antiparallel (AP) alignment with the following exceptions. First, absorption by the TN cell depends on the bias for both polarization components of the excitation light, while the AP cell exhibits a bias dependency only for the component polarized along the alignment direction. Second, the PL from the TN cell is mostly polarized along the alignment direction on the exit side of the cell while the PL from the AP cell is mostly polarized along its alignment direction. These observations can be attributed to the fact that the polarization plane of a linearly polarized light rotates as it propagated the TN-LC layer. For both AP and TN cells, low-intensity PL is observed from the whole cell surfaces. This can degrade the contrast of a displayed image. Bias application to the cell suppresses this effect.
用于能量收集显示器的扭曲向列液晶/染料电池的光致发光测量
人们可以通过扫描上面的激光束将发光太阳能聚光器(LSC)转换为能量收集显示器。通过在LSC中加入液晶(LC)和染料材料的主客系统,用于显示或能量收集的光致发光(PL)功率可以根据环境照明条件的变化进行调整。我们测量了具有扭曲向列(TN)排列的LC/染料电池的基本特性。这些是激光光的吸收,PL辐射模式,亮度对比,狭窄激光束产生的PL扩散,以及它们对偏压的依赖关系。结果与反平行(AP)对准的LC/染料电池相似,但有以下例外。首先,TN电池的吸收取决于激发光的两个偏振分量的偏置,而AP电池仅对沿对准方向偏振的分量表现出偏置依赖性。其次,来自TN单元的PL主要沿着单元出口侧的对准方向极化,而来自AP单元的PL主要沿着其对准方向极化。这些观察结果可归因于线偏振光在TN-LC层传播时偏振面旋转的事实。对于AP细胞和TN细胞,从整个细胞表面观察到低强度PL。这会降低所显示图像的对比度。对细胞施加偏置会抑制这种效应。
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