[1] Long G L, Pan D. Progress in quantum secure direct communication[J]. Information and Communications Technology and Policy, 47, 1-7(2021).
[2] Long G L. Quantum secure direct communication: principles and progress[J]. Information and Communications Technology and Policy, 10-19(2020).
[3] Wang S, Yin Z Q, He D Y et al. Twin-field quantum key distribution over 830-km fibre[J]. Nature Photonics, 16, 154-161(2022).
[4] Fan-Yuan G J, Lu F Y, Wang S et al. Robust and adaptable quantum key distribution network without trusted nodes[J]. Optica, 9, 812-823(2022).
[5] Wang J P, Li Z H, Sun Z Q et al. Loss-tolerant measurement device independent quantum key distribution with reference frame misalignment[J]. Chinese Optics Letters, 20, 092701(2022).
[6] Ding Y Y, Chen H, Wang S et al. Polarization variations in installed fibers and their influence on quantum key distribution systems[J]. Optics Express, 25, 27923-27936(2017).
[7] Liu L L, Jing M Y, Yu B et al. Polarization control in single photons phase coding quantum key distribution system[J]. Laser & Optoelectronics Progress, 52, 262-266(2015).
[8] Zhang Y C, Li Z Y, Chen Z Y et al. Continuous-variable QKD over 50 km commercial fiber[J]. Quantum Science and Technology, 4, 035006(2019).
[9] Ding Y Y, Chen W, Chen H et al. Polarization-basis tracking scheme for quantum key distribution using revealed sifted key bits[J]. Optics Letters, 42, 1023-1026(2017).
[10] Wu J L, Ke X Z. Development of adaptive optical correction and polarization control modules for 10-km free-space coherent optical communications[J]. Journal of Modern Optics, 67, 189-195(2020).
[11] Suprano A, Zia D, Polino E et al. Dynamical learning of a photonics quantum-state engineering process[J]. Advanced Photonics, 3, 066002(2021).
[12] Martinelli M. A universal compensator for polarization changes induced by birefringence on a retracing beam[J]. Optics Communications, 72, 341-344(1989).
[13] You Y, Qi Y F, He B et al. Principles and development of active polarization control technology for fiber lasers[J]. Laser & Optoelectronics Progress, 56, 100001(2019).
[14] Bedroya O, Li C Y, Qian L et al. Resource-efficient real-time polarization compensation for MDI-QKD with rejected data[C], JTh3A.2(2021).
[15] An H Y, Liu D W, Geng R H et al. Polarization controlling by FPGA for quantum security communication[J]. Systems Engineering and Electronics, 38, 1917-1921(2016).
[16] Guo H, Liu N, Li Z et al. Generation of continuous-variable high-dimensional entanglement with three degrees of freedom and multiplexing quantum dense coding[J]. Photonics Research, 10, 2828-2835(2022).
[17] Li P C, Liu K, Jiang J F et al. Research on polarization control of distributed optical fiber sensing system based on FPGA[J]. Chinese Journal of Lasers, 45, 0510002(2018).
[18] Yin M, Su R T, Wang X L et al. Theoretical and experimental research on polarization control of fiber laser based on SPGD algorithm[J]. Laser & Optoelectronics Progress, 55, 090602(2018).
[19] You Y, Qi Y F, Shen H et al. Research on active polarization control system of fiber laser based on a mixed genetic algorithm and simulated annealing algorithm[J]. Acta Optica Sinica, 40, 2314002(2020).
[20] Wang S Y. Research on fiber polarization stabilization technology[D](2020).
[21] Yin H L, Liu P, Dai W W et al. Experimental composable security decoy-state quantum key distribution using time-phase encoding[J]. Optics Express, 28, 29479-29485(2020).
[22] Yin H L, Fu Y, Liu H et al. Experimental quantum digital signature over 102 km[J]. Physical Review A, 95, 032334(2017).
[23] Hu Z L, Jiang P, Ma L N et al. Suppression of polarization induced signal fading and phase noise utilizing orthogonal-polarization switching method[J]. Chinese Journal of Lasers, 43, 0910001(2016).