物理
光子学
量子
炸薯条
光电子学
固态
量子力学
工程物理
电信
计算机科学
作者
Florian Böhm,Niko Nikolay,Christoph Pyrlik,Jan Schlegel,Andreas Thies,Andreas Wicht,G. Tränkle,Oliver Benson
标识
DOI:10.1088/1367-2630/ab1144
摘要
Abstract One important building block for future integrated nanophotonic devices is the scalable on-chip interfacing of single photon emitters and quantum memories with single optical modes. Here we present the deterministic integration of a single solid-state qubit, the nitrogen-vacancy (NV) center, with a photonic platform consisting exclusively of SiO 2 grown thermally on a Si substrate. The platform stands out by its ultra-low fluorescence and the ability to produce various passive structures such as high-Q microresonators and mode-size converters. By numerical analysis an optimal structure for the efficient coupling of a dipole emitter to the guided mode could be determined. Experimentally, the integration of a preselected NV emitter was performed with an atomic force microscope and the on-chip excitation of the quantum emitter as well as the coupling of single photons to the guided mode of the integrated structure could be demonstrated. Our approach shows the potential of this platform as a robust nanoscale interface of on-chip photonic structures with solid-state qubits.
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