[1] Ze-Liang Xiang, Sahel Ashhab, J.Q. You, et al..Hybrid quantum circuits: Superconducting circuits interacting with other quantum systems [J].Review of Modern Physics, 2013, 85(2):623-653[2] Markus Aspelmeyer, Tobias J. Kippenberg, and Florian Marquardt. .Cavity optomechanics[J].Review of Modern Physics, 2014, 86(4):1391-1446[3]M. J. A. Schuetz, E. M. Kessler, G. Giedke, et al. .Universal Quantum Transducers Based on Surface Acoustic Waves [J].Physical Review X, 2015, 5(3):031031-031031[4] Marcus W. Doherty, Neil B. Mansonb, Paul Delaney, et al..The nitrogen-vacancy colour centre in diamond , 2013, 528: 1-45.[J].Physics Reports, 2013, 528(1):1-45[5]Peng C Z, Pan J W.Quantum Science Experimental Satellite "Micius"[J].Bulletin of Chinese Academy of Sciences, 2016, 31(09):1096-1104[6]彭承志, 潘建伟.量子科学实验卫星——“墨子号[J].中国科学院院刊, 2016, 31(09):1096-1104[7]Zhao J Q, Cao L Z, Yang Y, et al.Tripartite entanglement and nonlocality in three-photon generalized GHZ states[J].Chinese Journal of Quantum Electronics, 2018, 35(5):583-588[8]赵加强, 曹连振, 杨 阳, 等.三光子广义态中三体纠缠和非定域性研究[J].量子电子学报, 2018, 35(5):583-588[9]Guo G C, Zhang H, Wang Q.Review on development of quantum information technology[J].Journal of Nanjing University of Posts and Telecommunications(Natural Science), 2017, 37(03):1-14[10]郭光灿, 张昊, 王琴.量子信息技术发展概况[J].南京邮电大学学报自然科学版, 2017, 37(03):1-14[11] Li C F, Guo G C.Progress In Quantum Information Research [J].Progress in Physics, 2000, 20(4):407-431[12]李传锋, 郭光灿.量子信息研究进展[J].物理学进展, 2000, 20(4):407-431[13]Ding Z, Shi F Z, Du J F.Nanoscale magnetic imaging based on quantum sensing with diamond and its applications to condensed matter physics[J].Physics, 2020, 49(06):359-372[14]丁哲, 石发展, 杜江峰.基于金刚石量子传感的纳米磁成像及凝聚态物理应用[J].物理, 2020, 49(06):359-372[15]Yan K, Xie Y Q, Huang Y M, et al.Quantum Fisher information evolution of entangled states in spin-Boson system[J].Chinese Journal of Quantum Electronics, 2018, 35(1):42-48[16]严凯, 谢燕青, 黄雨梦, 等.自旋-玻色系统中纠缠态的量子信息量演化[J].量子电子学报, 2018, 35(1):42-48[17] P. Lodahl, S. Mahmoodian, S. Stobbe, et al. .Chiral quantum optics [J].Nature, 2017, 541(7638):473-480[18] M. J. A. Schuetz,J. Kn?rzer, G. Giedke, et al. .Acoustic Traps and Lattices for Electrons in Semiconductors[J].Physical Review X, 2017, 7(4):041019-041019[19]D. Andrew Golter, Thein Oo, Mayra Amezcua, et al. .Coupling a Surface Acoustic Wave to an Electron Spin in Diamond via a Dark State[J].Physical Review X, 2016, 6(4):041060-041060[20] Peng-Bo Li, Yuan Zhou, Wei-Bo Gao, et al. .Enhancing Spin-Phonon and Spin-Spin Interactions Using Linear Resources in a Hybrid Quantum System[J].Physical Review Letters, 2020, 125(15):153602-153602[21] Peng-Bo Li, Ze-Liang Xiang, Peter Rabl, et al..Hybrid Quantum Device with Nitrogen-Vacancy Centers in Diamond Coupled to Carbon Nanotubes [J].Physical Review Letters, 2016, 117(1):015502-015502[22]Xiao-Yu Yao, Hamad Ali, Fu-Li Li, et al..Nonreciprocal Phonon Blockade in a Spinning Acoustic Ring Cavity Coupled to a Two-Level System[J].Physical Review Applied, 2022, 17(5):054004-054004[23]Xing-Liang Dong, Peng-Bo Li, Tao Liu, et al..Unconventional Quantum Sound-Matter Interactions in Spin-Optomechanical-Crystal Hybrid Systems [J].Physical Review Letters, 2021, 126(20):203601-203601[24] Hui Jing, S. K. ?zdemir, Xin-You Lü, et al. .PT-Symmetric Phonon Laser[J].Physical Review Letters, 2014, 113(5):053604-053604[25]Ran Huang, Adam Miranowicz, Jie-Qiao Liao, et al.Nonreciprocal Photon Blockade 2018, 121: .[J].Physical Review Letters, 2018, 121(15):153601-153601[26] Lin Tian and Zhen Li.Nonreciprocal quantum-state conversion between microwave and optical photons[J].Physical Review A, 2017, 96(1):013808-013808 |