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Circularly polarized luminescence from chiral thin films

机译:手性薄膜的圆极化发光

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Photoluminescent nanostructured thin films have been fabricated using physical vapour deposition and the glancing angle deposition (GLAD) technique. Precision controlled substrate motion and oblique incidence (>75°) enable the fabrication of a variety of 3-D morphologies including vertical posts, helical (chiral) columns and chevrons. Scanning electron microscopy and X-ray diffraction were used to characterize the film nanostructure. These experiments focussed on the chiral morphology which exhibits intriguing polarization behaviour such as selective transmission of circularly polarized light and circularly polarized photoluminescence. Helical films of Y_2O_3:Eu and Alq_3 were fabricated with thicknesses in excess of 2 μm and densities nominally 60% of bulk. Transmission spectroscopic ellipsometry measurements were used to determine the degree of selective transmission of polarized light through the samples. The degree of circular polarization for the photoluminescent light emitted from helical films was measured with the use of a quarter waveplate and linear polarizer. Polarized photoluminescence efficiencies were consistent with the observed selective transmission of circularly polarized light through the films. The use of GLAD to control the nanoscale morphology of the films allows for the spectral location and strength of these polarization effects to be easily and accurately selected.
机译:使用物理气相沉积和透明角沉积(高兴)技术制造了光致发光的纳米结构薄膜。精密控制的基板运动和斜发射(> 75°)使得可以制造各种3-D形态,包括垂直柱,螺旋(手性)柱和脚轮。扫描电子显微镜和X射线衍射用于表征膜纳米结构。这些实验侧重于手性形态,其表现出诱人的偏振行为,例如圆偏振光和圆偏振光致发光的选择性透射。 Y_2O_3的螺旋薄膜:欧盟和ALQ_3的厚度以超过2μm的厚度和浓度标称为60%的散装。传输光谱椭圆形测量测量测量用于确定通过样品的偏振光的选择性透射程度。通过使用四分之一波片和线性偏振器测量从螺旋膜发射的光致发光光的圆极化程度。偏振光致发光效率与通过薄膜观察到的圆偏振光的选择性传递一致。使用高兴控制薄膜的纳米级形态允许易于准确地选择这些偏振效应的光谱位置和强度。

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