Page 102 - 《真空与低温》2026年第1期
P. 102

刘 攀等:用于原子干涉的光学锁相环技术研究进展                                         99


              [49]   WEI C H,YAN S H,JIA A A,et al. Compact phase-lock  mmable gate array[J]. The Review of Scientific Instruments,
                  loop for external cavity diode lasers[J]. Chinese Optics Let-  2012,83(9):093104.
                  ters,2016,14(5):61−64.                        [62]   LEIBRANDT D R,HEIDECKER J. An open source digital
              [50]   ZHAO Y,WANG S,ZHUANG W,et al. Raman-laser sys-  servo  for  atomic, molecular, and  optical  physics  experi-
                                             87                     ments[J].  The  Review  of  Scientific  Instruments, 2015,
                  tem for absolute gravimeter based on  Rb atom interferom-
                  eter[J]. Photonics,2020,7(2):7020032.             86(12):123115.
              [51]   WANG S,ZHAO Y,ZHUANG W,et al. Shift evaluation  [63]   YU S J,FAJEAU E,LIU L Q,et al. The performance and
                  of the atomic gravimeter NIM-AGRb-1 and its comparison  limitations of FPGA-based digital servos for atomic,molec-
                  with FG5X[J]. Metrologia,2018,55(3):360−365.      ular, and  optical  physics  experiments[J].  The  Review  of
              [52]   孟增明,黄良辉,彭鹏,等. 光学相位锁定激光在原子玻色-                   Scientific Instruments,2018,89(2):025107.
                  爱因斯坦凝聚中实现拉曼耦合           [J]. 物理学报,2015,64     [64]   ALEX T,VINCENT M,NICOLAS H B,et al. An open and
                  (24):176−181.                                     flexible digital phase-locked loop for optical metrology[J].
              [53]   JIANG B N. Low noise phase-locked laser system for atom  The Review of Scientific Instruments,2018,89(9):093103.
                  interferometry[J]. Applied Physics B,2022,128(4):10689.  [65]   TAKUMI  K, DAISUKE  A, KAZUMOTO  H, et  al.  A  re-
              [54]   WANG F D,MA W X,MEI F,et al. Simple,low-cost,and  locking scheme for optical phase locking using a digital cir-
                  well-performing  optical  phase-locked  loop  for  frequency  cuit with an electrical delay line[J]. Review of Scientific In-
                  and phase locking of semiconductor lasers[J]. Applied Op-  struments,2019,90(10):103002.
                  tics,2023,62(27):7169−7174.                   [66]   WIEGAND B,LEYKAUF B,JÖRDENS R,et al. Linien:A
              [55]   LEE S,HWANG S,BAEK J,et al. Characterization of opti-  versatile,user-friendly,open-source FPGA-based tool for fre-
                  cal  phase-locked  two  distributed-feedback  fiber  lasers  for  quency stabilization and spectroscopy parameter optimiza-
                  87 Rb atom interferometry[J]. Current Applied Physics,2023,  tion[J]. The Review of Scientific Instruments,2022,93(6):
                                                                    063001.
                  51:29−33.
              [56]   WANG G,WANG E,WANG Y,et al. A fiber-integrated  [67]   STEED J R,POZZI F,FICE M J,et al. Monolithically integra-
                                                                    ted heterodyne optical phase-lock loop with RF XOR phase
                  and  power-regulated  single-sideband  modulated  Raman
                                                                    detector[J].  Optics  Express, 2011, 19(21): 20048−20053.
                  laser source for atom interferometry[J]. Optical and Quan-
                                                                [68]   RAFIN S,SIMSEK A,LU M Z,et al. Heterodyne locking
                  tum Electronics,2024,57(1):37.
                                                                    of a fully integrated optical phase-locked loop with on-chip
              [57]   MAO D K,SHUI H M,YIN G L,et al. Gigahertz frequen-
                                                                    modulators[J]. Optics Letters,2017,42(19):3745−3748.
                  cy  hopping  in  an  optical  phase-locked  loop  for  Raman
                                                                [69]   BALAKIER K,PONNAMPALAM L,FICE M J,et al. In-
                  lasers[J]. Chinese Physics B,2024,33(2):024209.
                                                                    tegrated  semiconductor  laser  optical  phase  lock  loops[J].
              [58]   ZHU  H, HUANG  P, GAO  B, et  al.  Miniaturized  optical
                                                                    IEEE  Journal  of  Selected  Topics  in  Quantum  Electronics,
                  system  for  high-precision  mobile  atomic  gravimeters[J].
                                                                    2018,24(1):1−12.
                  Optics Express,2024,32(15):26157−26166.
                                                                [70]   LEE J,ROGER D,JUSTIN C,et al. A compact cold-atom
              [59]   SUN C,LU B S,JIANG M,et al. Highly stable modular-as-
                                                                    interferometer  with  a  high  data-rate  grating  magneto-opti-
                  sembled laser system for a dual-atom-interferometer gyro-
                                                                    cal  trap  and  a  photonic-integrated-circuit-compatible  laser
                  scope[J]. Optics and Laser Technology,2025,187:112771.
                                                                    system[J]. Nature Communications,2022,13(1):5131.
              [60]   WANG X L,TAO T J,CHENG B,et al. A digital phase
                                                                [71]   KODIGALA A,GEHL M,HOTH W G,et al. High-performa-
                  lock loop for an external cavity diode laser[J]. Chinese Phy-
                                                                    nce silicon photonic single-sideband modulators for cold-ato-
                  sics Letters,2011,28(8):084214.
                                                                    m interferometry[J]. Science Advances,2024,10(28):4454.
              [61]   XU Z X,ZHANG X,HUANG K K,et al. A digital optical
                  phase-locked  loop  for  diode  lasers  based  on  field  progra-    (责任编辑:郭 云)


              引文信息:刘攀,肖玉华,张炯阳,等. 用于原子干涉的光学锁相环技术研究进展[J]. 真空与低温,2026,32(1):87−99.
                      LIU  P, XIAO  Y  H, ZHANG  J  Y, et  al.  Research  progress  on  optical  phase-locked  loop  technology  for  atom  interfe-
                      rometry[J]. Vacuum and Cryogenics,2026,32(1):87−99.
   97   98   99   100   101   102   103   104   105   106   107