Author Affiliations
Abstract
1 CAS Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei 230026, China
2 CAS Center for Excellence in Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei 230026, China
3 Hefei National Laboratory, University of Science and Technology of China, Hefei 230088, China
Phase-coherent multi-tone lasers play a critical role in atomic, molecular, and optical physics. Among them, the Raman opeartion laser for manipulating atomic hyperfine qubits requires gigahertz bandwidth and low phase noise to retain long-term coherence. Raman operation lasers generated by directly modulated and frequency-multipled infrared lasers are compact and stable but lack feedback control to actively suppress the phase noise, which limits their performance in practical applications. In this work, we employ a fiber electro-optical modulator driven by a voltage-controlled oscillator (VCO) to modulate a monochromatic laser and employ a second-harmonic generation process to convert it to the visible domain, where the beat note of the Raman operation laser is stabilized by controlling the output frequency of VCO with a digital phase-locked loop (PLL). The low-frequency phase noise is effectively suppressed compared to the scheme without active feedback and it reaches -80 dBc/Hz@5 kHz with a 20 kHz loop bandwidth. Furthermore, this compact and robust scheme effectively reduces the system’s complexity and cost, which is promising for extensive application in atomic, molecular, and optical physics.
phase-coherent laser quantum information trapped ion stimulated Raman transition phase-locked loop 
Chinese Optics Letters
2024, 22(2): 022702
徐凯 1,*曹洹 1,2张超 1胡晓敏 1[ ... ]李传锋 1
作者单位
摘要
1 中国科学技术大学, 中国科学院量子信息重点实验室, 安徽 合肥 230026
2 维也纳大学物理学院维也纳量子科学与技术中心, 奥地利 维也纳 1090
携带轨道角动量 (OAM) 的光束理论上拥有无限个相互正交的本征态, 因此可以作为独立信息传输光束促进大容量经典光通信的发展。在量子信息领域, 近年来高维量子系统因为有更大的信道容量和更强的抗噪声能力引起了研究人员的极大兴趣, 而光子 OAM 出色的维度拓展能力使其成为实现高维量子系统的重要手段。综述了光子 OAM 传输的研究进展, 重点介绍和分析了自由空间、光纤以及水下等多种传输方式下 OAM 量子叠加态和纠缠态分发工作, 并对实际应用中面临的问题和潜在的解决方案进行了阐述, 可为相关领域研究者提供参考。
量子光学 轨道角动量 高维量子系统 量子信息 量子叠加态 纠缠态分发 quantum optics orbital angular momentum high dimensional quantum system quantum information quantum superposition state entanglement distribution 
量子电子学报
2022, 39(1): 3
Author Affiliations
Abstract
1 CAS Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei 230026, China
2 CAS Center for Excellence in Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei 230026, China
We have demonstrated a mode matching method between two different fibers by a hybrid thermal expanded core technique, which can be applied to match the modes of fiber-based Fabry–Pérot cavities. Experimentally, this method has achieved an expansion of the ultraviolet fiber core by 3.5 times while keeping fundamental mode propagation. With the experiment parameters, the fundamental mode coupling efficiency between the fiber and micro-cavity can reach 95% for a plano-concave cavity with a length of 400 μm. This method can not only have potential in quantum photonics research but also can be applied in classical optical fields.
060.2310 Fiber optics 120.2230 Fabry-Perot 140.3948 Microcavity devices 020.5580 Quantum electrodynamics 
Chinese Optics Letters
2019, 17(9): 090601
Author Affiliations
Abstract
1 CAS Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei 230026, China
2 Synergetic Innovation Centre in Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei 230026, China
Generation of a cavity-enhanced nondegenerate narrow-band photon pair source is a potential way to realize a perfect photonic quantum interface for a hybrid quantum network. However, to ensure the high quality of the photon source, the pump laser for the narrow-band photon source should be generated in a special way. Here, we experimentally generate the blue 453 nm laser with a sum frequency generation process in a periodically poled lithium niobate waveguide. A 13 mW laser at 453 nm can be achieved with a low-power 880 nm laser and 935 nm laser input, and the internal conversion efficiency is 21.6% after calculation. The frequency of a 453 nm laser is stabilized by locking two pump lasers on one ultrastable optical cavity. The single pass process without employing cavity enhancement can ensure a good robustness of the whole system.
270.5585 Quantum information and processing 140.3613 Lasers, upconversion 
Chinese Optics Letters
2017, 15(12): 122701
作者单位
摘要
中国科技大学量子通信与量子计算实验室,合肥,230026
叙述了自发参量下转换制备双光子纠缠态技术的发展历程、技术原理以及在量子信息学中的应用,并介绍了国内这一领域的进展.
量子纠缠 自发参量下转换 量子信息 
激光与光电子学进展
2002, 39(7): 16

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