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Photonic-corral-mode quantum ring lasers investigated by laser scanning microscopy and near field microscopy

机译:通过激光扫描显微镜和近场显微镜研究研究了光子核 - 模式量子环激光

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Ultralow threshold microcavity lasers are ideal candidates for high-density optical interconnect light sources. Although they have been extensively studied for the last decade, μA-level electro-pumped quantum confined lasers are still under investigation. Photonic-corral-mode quantum ring (PQR) lasers with the linewidth narrower than 0.55Å generate micro-to-nano-ampere thresholds, and become ideal for CMOS-driven high-density emitter arrays for intra-chip optical interconnect as well as other applications such as displays. By using laser beam induced current technique (LBIC) technique in laser scanning microscopy (LSM) we investigated the photocurrent confinement in the laser structure. The photocurrent map gives the possibility to analyze the laser structure uniformity. The emission spectra of a PQR laser was investigated by using of microscopic optical fiber probe.
机译:超级阈值微腔激光器是高密度光学互连光源的理想候选者。虽然它们在过去十年中被广泛研究,但μA级电泵送量子局限性激光器仍在进行调查中。光子 - 核 - 模式量子环(PQR)具有较窄的线宽的激光器,比0.55Å更窄,产生微纳米安培阈值,并成为CMOS驱动的高密度发射极阵列,用于芯片内光学互连以及其他诸如显示的应用程序。通过在激光扫描显微镜(LSM)中使用激光束感应电流技术(LBIC)技术,我们研究了激光结构中的光电流限制。光电流图提供了分析激光结构均匀性的可能性。通过使用微观光纤探针研究了PQR激光的发射光谱。

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