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Fast Reversible Phase Change Silicon for Visible Active Photonics

机译:用于可见光有源光子学的快速可逆相变硅

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摘要

Both amorphous and crystalline silicon are ubiquitous materials for electronics, photonics, and microelectromechanical systems. On-demand control of Si crystallinity is crucial for device manufacturing and to overcome the limitations of current phase-change materials (PCM) in active photonics. Fast reversible phase transformation in silicon, however, has never been accomplished due to the notorious challenge of amorphization. It is demonstrated that nanostructured Si can function as a PCM, since it can be reversibly crystallized and amorphized under nanosecond laser irradiation with different pulse energies. Reflection probing on a single nanodisk's phase transformations confirms the distinct mechanisms for crystallization and amorphization. The experimental results show that the relaxation time of undercooled silicon at 950 K is 10 ns. The phase change provides a 20% nonvolatile reflectivity modulation within 100 ns and can be repeated over 400 times. It is shown that such transformations are free of deformation upon solidification. Based on the switchable photonic properties in the visible spectrum, proof-of-concept experiments of dielectric color displays and dynamic wavefront control are shown. Therefore, nanostructured silicon is proposed as a chemically stable, deformation free, and complementary metal-oxide-semiconductor compatible (CMOS) PCM for active photonics at visible wavelengths.
机译:非晶硅和晶体硅都是电子,光子和微机电系统的普遍材料。 Si结晶度的按需控制对于器件制造以及克服有源光子学中当前相变材料(PCM)的局限性至关重要。然而,由于臭名昭著的非晶化挑战,硅中的快速可逆相变从未实现。证明了纳米结构的Si可以用作PCM,因为它可以在具有不同脉冲能量的纳秒激光辐照下可逆地结晶和非晶化。单个纳米盘的相变的反射探测证实了结晶和非晶化的独特机制。实验结果表明,过冷硅在950 K下的弛豫时间为10 ns。相变可在100 ns内提供20%的非易失性反射率调制,并可重复400次以上。结果表明,这种转变在固化时没有变形。基于可见光谱中的可切换光子特性,显示了介电色显示器和动态波前控制的概念验证实验。因此,提出了纳米结构硅作为化学稳定,无变形和互补金属氧化物半导体兼容(CMOS)PCM,用于可见光波长的有源光子。

著录项

  • 来源
    《Advanced Functional Materials 》 |2020年第17期| 1910784.1-1910784.11| 共11页
  • 作者

  • 作者单位

    Univ Calif Berkeley Dept Mech Engn Laser Thermal Lab Berkeley CA 94720 USA;

    Univ Calif Berkeley Dept Mat Sci & Engn Berkeley CA 94720 USA;

    Missouri Univ Sci & Technol Dept Mech & Aerosp Engn Rolla MO 65401 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lasers; phase transformation; photonics; silicon;

    机译:激光相变光子学硅;

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