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PHOTONIC INTEGRATED CIRCUITS BASED ON QUANTUM CASCADE STRUCTURES

机译:基于量子级联结构的光子集成电路

摘要

Photonic integrated circuits (PICs) are based on quantum cascade (QC) structures. In embodiment methods and corresponding devices, a QC layer in a wave confinement region of an integrated multi-layer semiconductor structure capable of producing optical gain is depleted of free charge carriers to create a low-loss optical wave confinement region in a portion of the structure. Ion implantation may be used to create energetically deep trap levels to trap free charge carriers. Other embodiments include modifying a region of a passive, depleted QC structure to produce an active region capable of optical gain. Gain or loss may also be modified by partially depleting or enhancing free charge carrier density. QC lasers and amplifiers may be integrated monolithically with each other or with passive waveguides and other passive devices in a self-aligned manner. Embodiments overcome challenges of high cost, complex fabrication, and coupling loss involved with material re-growth methods.
机译:光子集成电路(PIC)基于量子级联(QC)结构。在实施例方法和相应的装置中,在能够产生光增益的集成多层半导体结构的波限制区域中的QC层耗尽了自由电荷载流子,从而在该结构的一部分中形成了低损耗光波限制区域。 。离子注入可用于产生能量深的陷阱能级,以捕获自由电荷载流子。其他实施例包括修改无源,耗尽的QC结构的区域以产生能够进行光学增益的有源区域。增益或损耗也可以通过部分耗尽或提高自由载流子密度来进行修改。 QC激光器和放大器可以自对准方式彼此集成在一起,或者与无源波导和其他无源器件集成在一起。实施例克服了与材料重新生长方法有关的高成本,复杂制造以及耦合损耗的挑战。

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