Prencipe Alessandro, Gyger Samuel, Baghban Mohammad Amin, Zichi Julien, Zeuner Katharina D, Lettner Thomas, Schweickert Lucas, Steinhauer Stephan, Elshaari Ali W, Gallo Katia, Zwiller Val
Department of Applied Physics, KTH Royal Institute of Technology, Roslagstullsbacken 21, Stockholm SE-106 91, Sweden.
Nano Lett. 2023 Nov 8;23(21):9748-9752. doi: 10.1021/acs.nanolett.3c02324. Epub 2023 Oct 23.
Lithium niobate, because of its nonlinear and electro-optical properties, is one of the materials of choice for photonic applications. The development of nanostructuring capabilities of thin film lithium niobate (TFLN) permits fabrication of small footprint, low-loss optical circuits. With the recent implementation of on-chip single-photon detectors, this architecture is among the most promising for realizing on-chip quantum optics experiments. In this Letter, we report on the implementation of superconducting nanowire single-photon detectors (SNSPDs) based on NbTiN on 300 nm thick TFLN ridge nano-waveguides. We demonstrate a waveguide-integrated wavelength meter based on the photon energy dependence of the superconducting detectors. The device operates at the telecom C- and L-bands and has a footprint smaller than 300 × 180 μm and critical currents between ∼12 and ∼14 μA, which ensures operation with minimum heat dissipation. Our results hold promise for future densely packed on-chip wavelength-multiplexed quantum communication systems.
铌酸锂因其非线性和电光特性,是光子应用的首选材料之一。薄膜铌酸锂(TFLN)纳米结构化能力的发展使得制造小尺寸、低损耗的光学电路成为可能。随着近期片上单光子探测器的实现,这种架构在实现片上量子光学实验方面最具前景。在本信函中,我们报告了基于NbTiN的超导纳米线单光子探测器(SNSPD)在300纳米厚的TFLN脊形纳米波导上的实现。我们展示了一种基于超导探测器光子能量依赖性的波导集成波长计。该器件在电信C波段和L波段工作,尺寸小于300×180μm,临界电流在12至14μA之间,确保了以最小的热耗散运行。我们的结果为未来密集封装的片上波长复用量子通信系统带来了希望。