Towards integrated tunable all-silicon free-electron light sources
Roques-Carmes C, Kooi SE, Yang Y, Massuda A, Keathley PD, Zaidi A, Yang Y, Joannopoulos JD, Berggren KK, Kaminer I, Soljačić M. 2019. Towards integrated tunable all-silicon free-electron light sources. Nature Communications. 10, 3176.
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Author
Roques-Carmes, CharlesISTA;
Kooi, Steven E.;
Yang, Yi;
Massuda, Aviram;
Keathley, Phillip D.;
Zaidi, Aun;
Yang, Yujia;
Joannopoulos, John D.;
Berggren, Karl K.;
Kaminer, Ido;
Soljačić, Marin
Abstract
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.
Publishing Year
Date Published
2019-07-18
Journal Title
Nature Communications
Publisher
Springer Nature
Volume
10
Article Number
3176
eISSN
IST-REx-ID
Cite this
Roques-Carmes C, Kooi SE, Yang Y, et al. Towards integrated tunable all-silicon free-electron light sources. Nature Communications. 2019;10. doi:10.1038/s41467-019-11070-7
Roques-Carmes, C., Kooi, S. E., Yang, Y., Massuda, A., Keathley, P. D., Zaidi, A., … Soljačić, M. (2019). Towards integrated tunable all-silicon free-electron light sources. Nature Communications. Springer Nature. https://doi.org/10.1038/s41467-019-11070-7
Roques-Carmes, Charles, Steven E. Kooi, Yi Yang, Aviram Massuda, Phillip D. Keathley, Aun Zaidi, Yujia Yang, et al. “Towards Integrated Tunable All-Silicon Free-Electron Light Sources.” Nature Communications. Springer Nature, 2019. https://doi.org/10.1038/s41467-019-11070-7.
C. Roques-Carmes et al., “Towards integrated tunable all-silicon free-electron light sources,” Nature Communications, vol. 10. Springer Nature, 2019.
Roques-Carmes C, Kooi SE, Yang Y, Massuda A, Keathley PD, Zaidi A, Yang Y, Joannopoulos JD, Berggren KK, Kaminer I, Soljačić M. 2019. Towards integrated tunable all-silicon free-electron light sources. Nature Communications. 10, 3176.
Roques-Carmes, Charles, et al. “Towards Integrated Tunable All-Silicon Free-Electron Light Sources.” Nature Communications, vol. 10, 3176, Springer Nature, 2019, doi:10.1038/s41467-019-11070-7.
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