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Mega-pixel PQR laser chips for interconnect, display ITS, and biocell-tweezers OEIC

机译:Mega-Pixel PQR激光芯片用于互连,显示其和Biocell-Tweezers Oeic

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We describe a photonic quantum ring (PQR) laser device of three dimensional toroidal whispering gallery cavity. We have succeeded in fabricating the first genuine mega-pixel laser chips via regular semiconductor technology. This has been realized since the present injection laser emitting surface-normal dominant 3D whispering gallery modes (WGMs) can be operated CW with extremely low operating currents (μA-nA per pixel), together with the lasing temperature stabilities well above 140 deg C with minimal redshifts, which solves the well-known integration problems facing the conventional VCSEL. Such properties unusual for quantum well lasers become usual because the active region, involving vertically confining DBR structure in addition to the 2D concave WGM geometry, induces a 'photonic quantum ring (PQR)-like' carrier distribution through a photonic quantum corral effect. A few applications of such mega-pixel PQR chips are explained as follows: (A) Next-generation 3D semiconductor technologies demand a strategy on the inter-chip and intra-chip optical interconnect schemes with a key to the high-density emitter array. (B) Due to mounting traffic problems and fatalities ITS technology today is looking for a revolutionary change in the technology. We will thus outline how 'SLEEP-ITS' can emerge with the PQR's position-sensing capability. (C) We describe a recent PQR 'hole' laser of convex WGM: Mega-pixel PQR 'hole' laser chips are even easier to fabricate than PQR 'mesa' lasers. Genuine Laguerre-Gaussian (LG) beam patterns of PQR holes are very promising for biocell manipulations like sorting mouse myeloid leukemia (Mis) cells. (D) Energy saving and 3D speckle-free POR laser can outdo LEDs in view of red GaAs and blue GaN devices fabricated recently.
机译:我们描述了三维环形耳语腔腔的光子量子环(PQR)激光装置。我们成功地通过常规半导体技术制造了第一个真正的巨型像素激光芯片。这已经实现了,因为本发明的注射激光发射表面普通主导3D耳语廊道模式(WGMS)可以通过极低的操作电流(μ-NA-NA每像素),以及高于140°C以上的激光温度稳定性最小的红移,解决了传统VCSEL面临的着名集成问题。对于量子阱激光器的这种性能变得通常,因为除了2D凹版WGM几何形状之外涉及垂直限制DBR结构的有源区,引起了通过光子量子栅效应的“光子量子环(PQR) - 样”载波分布。这样的兆像素PQR芯片的少数应用如下说明:(a)下一代3D半导体技术要求在芯片间和芯片内光学互连方案上的策略,其中键具有高密度发射器阵列的键。 (b)由于持续运输问题和其技术今天的致命,正在寻找该技术的革命性变化。因此,我们将概述如何使用PQR的位置感测能力出现“睡眠”。 (c)我们描述了凸起WGM的最近PQR'孔'激光器:Mega-Pixel PQR'孔'激光芯片比PQR'MESA的激光更容易制造。正版Laguerre-Gaussian(LG)PQR孔的光束图案对于生物蜂窝手术非常有前途,如分类小鼠髓性白血病(MIS)细胞。 (d)节能和3D斑点POR激光器可以依赖于最近制造的红色GaAs和Blue GaN设备的视图。

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