利用硅波导上的滴注氧化钒纳米颗粒实现热可重构光子开关

IF 3.7 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Gregory Tanyi, Daniel Peace, Mohammed Taha, Elliot Cheng, Xuan Hiep Dinh, Guanghui Ren, Christina Lim, Arnan Mitchell, Ranjith R. Unnithan
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引用次数: 0

摘要

光子开关在光通信和计算机网络中建立和释放光信号连接方面发挥着至关重要的作用。随着高速光计算和光通信领域对超小型开关的需求日益增长,热可重构光开关受到了广泛关注。这些开关结构简单、易于制造,并可利用各种热光学材料。由于硅与互补金属氧化物半导体(CMOS)技术的兼容性和成本效益,它仍然是制造包括开关在内的光子器件的理想平台。文章介绍了一种滴铸亚计量氧化钒(VO2-x)纳米粒子与硅脊波导的结合,从而制造出一种具有低转换温度和加速相变的紧凑型热可重构光开关。此外,该设计除了具有可扩展性和简易性之外,还实现了高调制深度。这项研究证明了基于溶液的 VO2-x 纳米粒子与硅波导的结合在为各种应用设计高效光学开关方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Thermally Reconfigurable Photonic Switch Utilizing Drop Cast Vanadium Oxide Nanoparticles on Silicon Waveguides

A Thermally Reconfigurable Photonic Switch Utilizing Drop Cast Vanadium Oxide Nanoparticles on Silicon Waveguides

Photonic switches play a vital role in optical communications and computer networks for establishing and releasing connections of optical signals. With the growing demand for ultra-compact switches in high-speed optical computing and communications, thermally reconfigurable optical switches have gained significant attention. These switches offer simplicity, ease of fabrication, and leverage a wide range of thermo-optic materials. Silicon remains an ideal platform for making photonic devices including the switches due to its compatibility with complementary metal-oxide-semiconductor (CMOS) technology and cost-effectiveness. The article presents a drop cast sub-stoichiometric vanadium oxide (VO2−x) nanoparticles combined with a silicon ridge waveguide to make a compact thermally reconfigurable optical switch with low transition temperature and accelerated phase transition. Furthermore, the design achieves high modulation depth in addition to its scalability and simplicity. This study demonstrates the potential of solution-based VO2−x nanoparticles in combination with silicon waveguides for efficient optical switch design for various applications.

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