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Two- and multi-terminal silicon light emitting devices in standard CMOS/BiCMOS IC technology

机译:采用标准CMOS / BiCMOS IC技术的两端子和多端子硅发光器件

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摘要

Although silicon is an indirect bandgap material, light emission from reverse biased pn junctions has been observed. Although the quantum efficiency is low, it will be very advantageous to utilise these devices in all-silicon optoelectronic integrated circuits (OIC's). In this paper a review of our large area display and fibre-optic devices is given, followed by new research results achieved at CEFIM with regard to low voltage two-terminal line source Si LED's. A discussion of the differences observed between avalanche and field emission LED performance is presented. The detail spectral characteristics of field emission devices, and the spectral modulation of the optical signal from field emission light emitting devices are investigated. The design and simulation of a CMOS two-colour detector is presented, to be used as a detector for spectrally modulated optical signals. Gate-controlled diode MOS-like and carrier injection BJT-like multi-terminal devices are reviewed, and it is particularly indicated that both spatial modulation of the light emitting pattern and light intensity modulation can be achieved with these devices.
机译:尽管硅是一种间接的带隙材料,但是已经观察到反向偏置pn结的发光。尽管量子效率很低,但在全硅光电集成电路(OIC)中使用这些器件将是非常有利的。本文概述了我们的大面积显示和光纤设备,随后在CEFIM上针对低压两端子线源Si LED取得了新的研究成果。讨论了雪崩和场发射LED性能之间的差异。研究了场发射器件的详细光谱特性,以及来自场发射发光器件的光信号的光谱调制。提出了CMOS两色检测器的设计和仿真,该检测器将用作光谱调制光信号的检测器。回顾了栅控二极管MOS型和载流子注入BJT型多端子设备,并且特别指出,利用这些设备可以实现发光图案的空间调制和光强度调制。

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