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Chip-Based All-Optical Control of Single Molecules Coherently Coupled to a Nanoguide

机译:基于芯片的单个分子的全光学控制,单个分子相干偶联至纳米糖苷

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摘要

src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/nalefd/2017/nalefd.2017.17.issue-8/acs.nanolett.7b02033/20170803/images/medium/nl-2017-02033a_0005.gif">The feasibility of many proposals in nanoquantum-optics depends on the efficient coupling of photons to individual quantum emitters, the possibility to control this interaction on demand, and the scalability of the experimental platform. To address these issues, we report on chip-based systems made of one-dimensional subwavelength dielectric waveguides (nanoguides) and polycyclic aromatic hydrocarbon molecules. We discuss the design and fabrication requirements, present data on extinction spectroscopy of single molecules coupled to a nanoguide mode, and show how an external optical beam can switch the propagation of light via a nonlinear optical process. The presented architecture paves the way for the investigation of many-body phenomena and polaritonic states and can be readily extended to more complex geometries for the realization of quantum integrated photonic circuits.
机译:src =“http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/nefd/2017/nalefd.2017.17.issue-8/acs.nanolett.7b02033/20170803/images/medium /nl-2017-02033a_0005.gif">纳米quantum-光学中许多提案的可行性取决于光子对单个量子发射器的有效耦合,可以控制这种相互作用的需求,以及实验平台的可扩展性。为了解决这些问题,我们报告了由一维亚壳长介电波导(纳米糖苷)和多环芳烃分子制成的基于芯片的系统。我们讨论了设计和制造要求,存在关于耦合到纳米孔模式的单分子的消光光谱的数据,并显示外部光束如何通过非线性光学处理切换光的传播。呈现的建筑铺平了对许多体现象和偏光性状态的研究的方式,并且可以容易地扩展到更复杂的几何形状以实现量子集成光子电路。

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