Biomedical Engineering Research Division, School of Engineering, University of Glasgow , Rankine Building, Glasgow G12 8LT, United Kingdom.
ACS Nano. 2016 Jan 26;10(1):492-8. doi: 10.1021/acsnano.5b05411. Epub 2016 Jan 12.
Color filters based upon nanostructured metals have garnered significant interest in recent years, having been positioned as alternatives to the organic dye-based filters which provide color selectivity in image sensors, as nonfading "printing" technologies for producing images with nanometer pixel resolution, and as ultra-high-resolution, small foot-print optical storage and encoding solutions. Here, we demonstrate a plasmonic filter set with polarization-switchable color properties, based upon arrays of asymmetric cross-shaped nanoapertures in an aluminum thin-film. Acting as individual color-emitting nanopixels, the plasmonic cavity-apertures have dual-color selectivity, transmitting one of two visible colors, controlled by the polarization of the white light incident on the rear of the pixel and tuned by varying the critical dimensions of the geometry and periodicity of the array. This structural approach to switchable optical filtering enables a single nanoaperture to encode two information states within the same physical nanoaperture, an attribute we use here to create micro image displays containing duality in their optical information states.
近年来,基于纳米结构金属的滤光片引起了人们的极大兴趣,它们被认为是替代有机染料滤光片的一种选择,有机染料滤光片可在图像传感器中提供颜色选择性,还可作为非褪色的“打印”技术,用于制造具有纳米像素分辨率的图像,以及超高分辨率、小尺寸的光学存储和编码解决方案。在这里,我们展示了一种基于铝薄膜中不对称十字形纳米孔阵列的等离子体滤光片组,具有偏振可切换的颜色特性。作为单个颜色发射纳米像素,等离子体腔-孔径具有双色选择性,传输两种可见颜色之一,由照射像素背面的白光偏振控制,并通过改变几何形状和阵列周期性的临界尺寸进行调节。这种结构方法可实现光学滤波的切换,使单个纳米孔在相同的物理纳米孔内编码两个信息状态,我们在这里使用此属性来创建微图像显示器,其光学信息状态具有双重性。