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Towards integrated tunable all-silicon free-electron light sources

机译:朝向集成的可调谐全硅式光源

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Extracting light from silicon is a longstanding challenge in modern engineering and physics. While silicon has underpinned the past 70 years of electronics advancement, a facile tunable and efficient silicon-based light source remains elusive. Here, we experimentally demonstrate the generation of tunable radiation from a one-dimensional, all-silicon nanograting. Light is generated by the spontaneous emission from the interaction of these nanogratings with low-energy free electrons (2-20?keV) and is recorded in the wavelength range of 800-1600?nm, which includes the silicon transparency window. Tunable free-electron-based light generation from nanoscale silicon gratings with efficiencies approaching those from metallic gratings is demonstrated. We theoretically investigate the feasibility of a scalable, compact, all-silicon tunable light source comprised of a silicon Field Emitter Array integrated with a silicon nanograting that emits at telecommunication wavelengths. Our results reveal the prospects of a CMOS-compatible electrically-pumped silicon light source for possible applications in the mid-infrared and telecommunication wavelengths.
机译:从硅中提取光线是现代工程和物理中的长期挑战。虽然硅在过去70年的电子设备进步下,但是一个容易的可调谐和高效的基于硅基光源仍然难以捉摸。在这里,我们通过实验证明了从一维全硅纳入的可调谐辐射的产生。光由来自这些纳米甲板的相互作用具有低能量自由电子(2-20×keV)的自发发射产生,并且记录在800-1600·nm的波长范围内,其包括硅透明度窗口。证明了从纳米级硅光栅的可调谐自由电子的光,效率接近金属光栅的效率。理论上地研究了由集成的硅场发射器阵列组成的可伸缩,紧凑,全硅可调谐光源的可行性,该硅领域发射极阵列与电信波长发射的硅纳米格化。我们的结果揭示了CMOS兼容的电泵硅光源的前景,用于中红外和电信波长的可能应用。

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