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在 CMOS 平台中集成亚波长 Si LED。

A sub-wavelength Si LED integrated in a CMOS platform.

机构信息

Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

Institute of Microelectronics (IME), A*STAR, Singapore, 138634, Singapore.

出版信息

Nat Commun. 2023 Feb 16;14(1):882. doi: 10.1038/s41467-023-36639-1.

Abstract

A nanoscale on-chip light source with high intensity is desired for various applications in integrated photonics systems. However, it is challenging to realize such an emitter using materials and fabrication processes compatible with the standard integrated circuit technology. In this letter, we report an electrically driven Si light-emitting diode with sub-wavelength emission area fabricated in an open-foundry microelectronics complementary metal-oxide-semiconductor platform. The light-emitting diode emission spectrum is centered around 1100 nm and the emission area is smaller than 0.14 μm (~[Formula: see text] nm). This light-emitting diode has high spatial intensity of >50 mW/cm which is comparable with state-of-the-art Si-based emitters with much larger emission areas. Due to sub-wavelength confinement, the emission exhibits a high degree of spatial coherence, which is demonstrated by incorporating the light-emitting diode into a compact lensless in-line holographic microscope. This centimeter-scale, all-silicon microscope utilizes a single emitter to simultaneously illuminate ~9.5 million pixels of a complementary metal-oxide-semiconductor imager.

摘要

对于集成光子学系统中的各种应用,人们需要一种高强度的纳米级片上光源。然而,使用与标准集成电路技术兼容的材料和制造工艺来实现这种发射器是具有挑战性的。在这封信件中,我们报告了一种在开放式微电子互补金属氧化物半导体平台中制造的具有亚波长发射面积的电驱动 Si 发光二极管。发光二极管的发射光谱中心在 1100nm 左右,发射面积小于 0.14μm(~[Formula: see text]nm)。这种发光二极管的空间强度高达 50mW/cm 以上,与具有更大发射面积的最先进的 Si 基发射器相当。由于亚波长限制,发射具有高度的空间相干性,这通过将发光二极管纳入紧凑的无透镜在线全息显微镜来证明。这种厘米级的全硅显微镜利用单个发射器同时照亮互补金属氧化物半导体成像器的约 950 万个像素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9509/9935894/b184df775259/41467_2023_36639_Fig1_HTML.jpg

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