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Rewritable color nanoprints in antimony trisulfide films

机译:锑三硫化物膜中的可重写彩色纳米罩

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Materials that exhibit large and rapid switching of their optical properties in the visible spectrum hold the key to color-changing devices. Antimony trisulfide (Sbsub2/subSsub3/sub) is a chalcogenide material that exhibits large refractive index changes of ~1 between crystalline and amorphous states. However, little is known about its ability to endure multiple switching cycles, its capacity for recording high-resolution patterns, nor the optical properties of the crystallized state. Unexpectedly, we show that crystalline Sbsub2/subSsub3/sub films that are just 20 nm thick can produce substantial birefringent phase retardation. We also report a high-speed rewritable patterning approach at subdiffraction resolutions (40,000 dpi) using 780-nm femtosecond laser pulses. Partial reamorphization is demonstrated and then used to write and erase multiple microscale color images with a wide range of colors over a ~120-nm band in the visible spectrum. These solid-state, rapid-switching, and ultrahigh-resolution color-changing devices could find applications in nonvolatile ultrathin displays.
机译:在可见光谱中表现出大型和快速切换其光学性能的材料将钥匙保持为变色器件。锑三硫化物(Sb 2 s 3 )是一种硫属化物材料,其在结晶和无定形状态之间表现出〜1的大折射率变化。然而,关于其忍受多个切换周期的能力几乎是知之甚少,其记录高分辨率图案的能力,也不是结晶状态的光学性质。出乎意料的是,我们表明,只有20nm厚的晶体Sb 2 s 3 薄膜可以产生大量双折射相延迟。我们还在使用780nm femtosecond激光脉冲下报告了在Subriffraction分辨率(> 40,000dpi)的高速可重写图案化方法。对局部钻孔化进行说明,然后用于在可见光谱中以〜120nm频段的宽范围颜色编写和擦除多个颜色的多个微观彩色图像。这些固态,快速切换和超高分辨率的变色装置可以在非易失性超薄显示器中找到应用。

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