Aghaeimeibodi Shahriar, Kim Je-Hyung, Lee Chang-Min, Buyukkaya Mustafa Atabey, Richardson Christopher, Waks Edo
Opt Express. 2019 Jun 10;27(12):16882-16889. doi: 10.1364/OE.27.016882.
Integration of single-photon sources and detectors to silicon-based photonics opens the possibility of complex circuits for quantum information processing. In this work, we demonstrate integration of quantum dots with a silicon photonic add-drop filter for on-chip filtering and routing of telecom photons. A silicon microdisk resonator acts as a narrow filter that transfers the quantum dot emission and filters the background over a wide wavelength range. Moreover, by tuning the quantum dot emission wavelength over the resonance of the microdisk, we can control the transmission of the quantum dot emission to the drop and through channels of the add-drop filter. This result is a step toward the on-chip control of single photons using silicon photonics for applications in quantum information processing, such as linear optical quantum computation and boson sampling.
将单光子源和探测器集成到硅基光子学中,为实现用于量子信息处理的复杂电路开辟了可能性。在这项工作中,我们展示了量子点与硅基光子学分插滤波器的集成,用于片上电信光子的滤波和路由。硅微盘谐振器充当一个窄滤波器,它传输量子点发射,并在很宽的波长范围内滤除背景光。此外,通过在微盘的谐振频率上调整量子点的发射波长,我们可以控制量子点发射到分插滤波器的下路和直通通道的传输。这一成果朝着利用硅光子学对单光子进行片上控制迈出了一步,可应用于量子信息处理,如线性光学量子计算和玻色子采样。