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Characterization, Selection, and Microassembly of Nanowire Laser Systems

机译:纳米线激光系统的表征,选择和微包装

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摘要

Semiconductor nanowire (NW) lasers are a promising technology for the realization of coherent optical sources with ultrasmall footprint. To fully realize their potential in on-chip photonic systems, scalable methods are required for dealing with large populations of inhomogeneous devices that are typically randomly distributed on host substrates. In this work two complementary, high-throughput techniques are combined: the characterization of nanowire laser populations using automated optical microscopy, and a high-accuracy transfer-printing process with automatic device spatial registration and transfer. Here, a population of NW lasers is characterized, binned by threshold energy density, and subsequently printed in arrays onto a secondary substrate. Statistical analysis of the transferred and control devices shows that the transfer process does not incur measurable laser damage, and the threshold binning can be maintained. Analysis on the threshold and mode spectra of the device populations proves the potential for using NW lasers for integrated systems fabrication.
机译:半导体纳米线(NW)激光器是实现具有超强占地面积的相干光源的有希望的技术。为了充分实现其片上光子系统的潜力,需要可扩展的方法来处理通常在宿主基板上随机分布的非均匀装置的大型群体。在这项工作中,两个互补的高通量技术组合:使用自动光学显微镜的纳米线激光群体的表征,以及具有自动装置空间登记和转移的高精度转印过程。这里,NW激光器的群体以阈值能量密度填充,随后在阵列中印刷到次级基板上。转移和控制装置的统计分析表明,转移过程不产生可测量的激光损坏,并且可以保持阈值排列。对设备群体的阈值和模式光谱分析证明了使用NW激光器进行集成系统制造的可能性。

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