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Graphene-contact electrically driven microdisk lasers

机译:石墨烯接触式电动微盘激光器

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摘要

Active nanophotonic devices are attractive due to their low-power consumption, ultrafast modulation speed and high-density integration. Although electrical operation is required for practical implementation of these devices, it is not straightforward to introduce a proper current path into such a wavelength-scale nanostructure without affecting the optical properties. For example, to demonstrate electrically driven nanolasers, complicated fabrication techniques have been used thus far. Here we report an electrically driven microdisk laser using a transparent graphene electrode. Current is injected efficiently through the graphene sheet covering the top surface of the microdisk cavity, and, for the first time, lasing operation was achieved with a low-threshold current of ~300 μA at room temperature. In addition, we measured significant electroluminescence from a graphene-contact subwavelength-scale single nanopillar structure. This work represents a new paradigm for the practical applications of integrated photonic systems, by conformally mounting graphene on the complex surfaces of non-planar three-dimensional nanostructures.
机译:有源纳米光子器件因其低功耗,超快调制速度和高密度集成而具有吸引力。尽管这些装置的实际实现需要电气操作,但是在不影响光学性能的情况下将适当的电流路径引入这样的波长级纳米结构并不容易。例如,为了演示电动纳米激光器,迄今为止已经使用了复杂的制造技术。在这里,我们报告了使用透明石墨烯电极的电动微盘激光器。电流有效地通过覆盖微盘腔顶表面的石墨烯片注入,并且首次在室温下以约300μμA的低阈值电流实现了激光操作。此外,我们从石墨烯接触的亚波长尺度的单个纳米柱结构测量了显着的电致发光。通过将石墨烯共形地安装在非平面三维纳米结构的复杂表面上,这项工作代表了集成光子系统实际应用的新范例。

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