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基于具有结构耐受性颜色饱和度的纳米多孔铝阳极氧化铝(Al-AAO)谐振器的滤色器。

Color filters based on a nanoporous Al-AAO resonator featuring structure tolerant color saturation.

作者信息

Yue Wenjing, Li Yang, Wang Cong, Yao Zhao, Lee Sang-Shin, Kim Nam-Young

出版信息

Opt Express. 2015 Oct 19;23(21):27474-83. doi: 10.1364/OE.23.027474.

Abstract

Reflection type subtractive tri-color filters, enabling metal-thickness tolerant high color saturation, were proposed and demonstrated capitalizing on a nanoporous metal-dielectric-metal (MDM) resonant structure, which comprises a cavity made of self-assembled nanoporous anodic aluminum oxide (AAO), sandwiched between an Al film of the same nanoporous configuration and a highly reflective aluminum (Al) substrate. For the proposed filter, the output color was easily determined by controlling the resonance wavelength via the thickness of the porous AAO cavity. In particular, the spectral response was deemed to exhibit a near-zero resonant dip, thereby achieving enhanced color saturation, which was stably maintained irrespective of the thickness of the porous Al film, due to its reduced effective refractive index. In order to manufacture the proposed color filters on a large scale, a porous Al film of hexagonal lattice configuration was integrated with an identically porous self-assembled AAO layer, which has been grown on an Al substrate. For the realized tri-color filters for cyan, magenta, and yellow (CMY), having a 15-nm Al film, near-zero reflection dips were observed to be centered at the wavelengths of 436, 500, and 600 nm, respectively. The resulting enhanced color saturation was stably maintained even though the variations were as large as 10 nm in the metal thickness.

摘要

利用纳米多孔金属 - 介质 - 金属(MDM)谐振结构,提出并展示了一种反射型减色三原色滤光片,该结构能够实现对金属厚度容忍的高色彩饱和度。该结构包括一个由自组装纳米多孔阳极氧化铝(AAO)制成的腔体,夹在具有相同纳米多孔结构的铝膜和高反射率铝(Al)基板之间。对于所提出的滤光片,通过控制多孔AAO腔体的厚度来控制共振波长,从而轻松确定输出颜色。特别地,光谱响应被认为呈现出近零共振凹陷,从而实现增强的色彩饱和度,由于其有效折射率降低,无论多孔铝膜的厚度如何,该饱和度都能稳定保持。为了大规模制造所提出的彩色滤光片,将六边形晶格结构的多孔铝膜与在铝基板上生长的相同多孔自组装AAO层集成在一起。对于所实现的用于青色、品红色和黄色(CMY)的三原色滤光片,在具有15 nm铝膜的情况下,观察到近零反射凹陷分别位于436、500和600 nm波长处。即使金属厚度变化高达10 nm,由此产生的增强色彩饱和度仍能稳定保持。

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