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A permanent optical storage medium exhibiting ultrahigh contrast,superior stability, and a broad working wavelength regime

机译:一种永久性的光学存储介质,具有超高的对比度,出色的稳定性和宽广的工作波长范围

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摘要

In this paper we demonstrate an optical storage medium having advantages of ultrahigh contrast, superior stability, and broadband working wavelengths. Combining a single shot of deep-ultraviolet (UV) laser illumination with a Au particle-assisted etching process, we formed broadband antireflective, one-dimensional silicon nanowire arrays (SiNWs) with selectively at specific positions. Optical measurements and three-dimensional finite-difference time domain (3D-FDTD) simulations revealed ultrahigh reflection contrast between the Au and the SiNWs for both far- and near-field regimes. Relative to typical organic-based storage media, Au films and SiNWs are more stable, both chemically and thermally; therefore, we suspect that this new storage medium would exhibit high stability toward moisture, sunshine, and elevated temperatures.
机译:在本文中,我们演示了一种光学存储介质,该介质具有超高对比度,出色的稳定性和宽带工作波长的优点。将单次深紫外(UV)激光照明与Au粒子辅助蚀刻工艺相结合,我们形成了宽带抗反射一维硅纳米线阵列(SiNWs),在特定位置有选择性。光学测量和三维有限差分时域(3D-FDTD)模拟显示,对于远场和近场方案,Au和SiNW之间的超高反射对比度。相对于典型的有机存储介质,金膜和SiNWs在化学和热方面都更稳定。因此,我们怀疑这种新的存储介质将对水分,阳光和高温表现出较高的稳定性。

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