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Author Affiliations
Abstract
1 State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, China
2 Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
3 e-mail: wangmh@sxu.edu.cn
4 e-mail: suxl@sxu.edu.cn
A hybrid entangled state that involves both discrete and continuous degrees of freedom is a key resource for hybrid quantum information processing. It is essential to characterize entanglement and quantum coherence of the hybrid entangled state toward the application of it. Here, we experimentally characterize the entanglement and quantum coherence of the prepared hybrid entangled state between a polarization-encoded discrete-variable qubit and a cat-encoded wave-like continuous-variable qubit. We show that the maximum quantum coherence is obtained when the probability of the horizontal-polarization photon is 0.5, and entanglement and quantum coherence of the hybrid entangled state are robust against loss in both discrete- and continuous-variable parts. Based on the experimentally reconstructed two-mode density matrix on the bases of polarization and cat state, we obtain the logarithm negativity of 0.57 and l1-norm of 0.82, respectively, which confirms the entanglement and quantum coherence of the state. Our work takes a crucial step toward the application of the polarization-cat hybrid entangled state.
Photonics Research
2025, 13(7): 1983
Author Affiliations
Abstract
1 State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, China
2 Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
The optical cat state plays an essential role in quantum computation and quantum metrology. Here, we experimentally quantify quantum coherence of an optical cat state by means of relative entropy and the l1 norm of coherence in a Fock basis based on the prepared optical cat state at the rubidium D1 line. By transmitting the optical cat state through a lossy channel, we also demonstrate the robustness of quantum coherence of the optical cat state in the presence of loss, which is different from the decoherence properties of fidelity and Wigner function negativity of the optical cat state. Our results confirm that quantum coherence of optical cat states is robust against loss and pave the way for the application of optical cat states.
Photonics Research
2021, 9(5): 05000887
作者单位
摘要
陕西应用物理化学研究所 应用物理化学国家级重点实验室, 陕西 西安710061
为研究烟火泵浦激光输出性能, 对烟火泵浦激光器中泵浦源与激光晶体棒进行匹配实验研究和烟火泵浦激光器出光实验研究, 以及烟火泵浦激光器光纤耦合输出实验研究。实验结果表明: 烟火泵浦激光器选用锆氧闪光灯作为泵浦源, 与工作物质为Nd∶YAG激光工作物质是相匹配的, 烟火泵浦激光器输出能量≥4.82 J, 满足烟火泵浦激光火工系统的能量输出需要; 烟火泵浦激光器光纤耦合输出能量≥2.87 J, 光纤耦合装置耦合效率达到50%以上, 为烟火泵浦激光器用于战斗机舱盖抛放、飞行员座椅弹射逃生等火工系统研究提供了重要的技术支持。
烟火 激光 Nd∶YAG晶体 闪光灯 光纤耦合 pyrotechnics laser crystal of Nd∶YAG flashlamp fiber coupling 
应用光学
2015, 36(6): 955

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