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Transfer printing of semiconductor nanowire lasers

机译:半导体纳米线激光器的转移印刷

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摘要

The authors review their work on the accurate positioning of semiconductor nanowire lasers by means of nanoscale Transfer Printing (nano-TP). Using this hybrid nanofabrication technique, indium phosphide (InP) NWs are successfully integrated at selected locations onto heterogeneous surfaces with high positioning accuracy. Moreover, we show that NW lasers can also be organised to form bespoke spatial patterns, including 1- or 2-Dimensional arrays, or complex configurations with defined number of NWs and controlled separation between them. Besides, our nano-TP technique also permits the integration of NWs with different dimensions in a single system. Notably, the nano-TP fabrication protocols do not affect the optical or structural properties of the NWs and they retain their room-temperature lasing emission after their positioning onto all investigated receiving surfaces. This developed nano-TP technique offers therefore new exciting prospects for the fabrication of hybrid bespoke nanophotonic systems using NW lasers as building blocks.
机译:作者回顾了他们通过纳米级转移印刷(nano-TP)对半导体纳米线激光器进行精确定位的工作。使用这种混合纳米加工技术,磷化铟(InP)NW成功地在选定位置集成到异质表面上,具有很高的定位精度。此外,我们显示NW激光器也可以组织形成定制的空间图案,包括一维或二维阵列,或具有定义数量的NW并在它们之间受控分离的复杂配置。此外,我们的nano-TP技术还允许将不同尺寸的NW集成到单个系统中。值得注意的是,纳米TP制造规程不影响NW的光学或结构特性,并且在将其放置在所有研究的接收表面上之后仍保留其室温激光发射。因此,这项先进的纳米TP技术为使用NW激光器作为构建模块的混合定制纳米光子系统的制造提供了令人兴奋的新前景。

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