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Integrated plasmonic circuitry on a vertical-cavity surface-emitting semiconductor laser platform

机译:垂直腔表面发射半导体激光器平台上的集成等离子体电路

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摘要

Integrated plasmonic sources and detectors are imperative in the practical development of plasmonic circuitry for bio- and chemical sensing, nanoscale optical information processing, as well as transducers for high-density optical data storage. Here we show that vertical-cavity surface-emitting lasers (VCSELs) can be employed as an on-chip, electrically pumped source or detector of plasmonic signals, when operated in forward or reverse bias, respectively. To this end, we experimentally demonstrate surface plasmon polariton excitation, waveguiding, frequency conversion and detection on a VCSEL-based plasmonic platform. The coupling efficiency of the VCSEL emission to waveguided surface plasmon polariton modes has been optimized using asymmetric plasmonic nanostructures. The plasmonic VCSEL platform validated here is a viable solution for practical realizations of plasmonic functionalities for various applications, such as those requiring sub-wavelength field confinement, refractive index sensitivity or optical near-field transduction with electrically driven sources, thus enabling the realization of on-chip optical communication and lab-on-a-chip devices.
机译:在用于生物和化学传感,纳米级光学信息处理以及用于高密度光学数据存储的换能器的等离子体电路的实际开发中,集成的等离子体源和检测器势在必行。在这里,我们表明,当分别在正向或反向偏置下运行时,垂直腔表面发射激光器(VCSEL)可用作片上电泵激等离子体信号的源或检测器。为此,我们在基于VCSEL的等离激元平台上实验证明了表面等离激元极化激发,波导,频率转换和检测。 VCSEL发射到波导表面等离子体激元模式的耦合效率已使用非对称等离子体纳米结构进行了优化。此处验证的等离子VCSEL平台是切实可行的解决方案,可用于各种应用的等离子功能的实际实现,例如那些需要亚波长场限制,折射率灵敏度或电驱动源进行光学近场转换的应用,从而可以实现芯片光通信和片上实验室设备。

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