论文标题

三角形量子光子设备,带有集成检测器的硅碳化物

Triangular Quantum Photonic Devices with Integrated Detectors in Silicon Carbide

论文作者

Majety, Sridhar, Strohauer, Stefan, Saha, Pranta, Wietschorke, Fabian, Finley, Jonathan J., Müller, Kai, Radulaski, Marina

论文摘要

已经研究了三角形SIC光子设备作为将颜色中心整合到量子硬件中的有效且可扩展的途径。在这项工作中,我们通过在其一侧引入光子晶体镜,另一侧引入光子晶体镜,另一个在另一个侧面引入了一个超导纳米电视单光子检测器(SNSPD),探索了三角形横截面SIC波导中颜色中心发射的有效收集和检测。我们具有随机定位的发射极的建模的三角形横截面设备在所需的光学模式中具有89%的最大耦合效率,并且在超过一半的配置中具有高耦合效率(> 75%)。首次将NBTIN薄膜溅射在4H-SIC上,并测量薄膜的电气和光学特性。我们发现,运输特性与SIO2底物上NBTIN的情况相似,而对于1680 nm波长的灭绝系数高达50%。最后,我们对与SNSPD集成的三角形横截面波导进行了有限差分时间域模拟,以识别最佳纳米线几何形状,以有效检测TE和TM极化模式的光。

Triangular cross-section SiC photonic devices have been studied as an efficient and scalable route for integration of color centers into quantum hardware. In this work, we explore efficient collection and detection of color center emission in a triangular cross-section SiC waveguide by introducing a photonic crystal mirror on its one side and a superconducting nanowire single photon detector (SNSPD) on the other. Our modeled triangular cross-section devices with a randomly positioned emitter have a maximum coupling efficiency of 89 % into the desired optical mode and a high coupling efficiency (> 75 %) in more than half of the configurations. For the first time, NbTiN thin films were sputtered on 4H-SiC and the electrical and optical properties of the thin films were measured. We found that the transport properties are similar to the case of NbTiN on SiO2 substrates, while the extinction coefficient is up to 50 % higher for 1680 nm wavelength. Finally, we performed Finite-Difference Time-Domain simulations of triangular cross-section waveguide integrated with an SNSPD to identify optimal nanowire geometries for efficient detection of light from TE and TM polarized modes.

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