一、文章
[1] Y. P. Zhao, C. Zhang, S. N. Bao, D. R. Li, J. Y. Niu, W. J. Tong, B. Cheng, X. L. Wang, K. X. Weng, H. Li, H. Mao, B. Wu, Q. Lin, Construction of a program for physical simulation of cold atom interferometry, Opt Express, 33(3) 6373 (2025). (通讯作者)
[2] C. Zhai, J. Wang, J. Zhou, Y. Wang, X. Tang, Y. Zhou, C. Zhang, R. Li, Q. Shu, K. Wang, S. Wang, Z. Jin, S. Hua, Y. Sun, Z. Wang, Z. Ma, M. Cai, X. Wang, B. Wu, Q. Lin, Airborne absolute gravity measurements based on quantum gravimeter, Acta Phys Sin, 74(7) 070302 (2025).
[3] K. X. Weng, P. S. Ding, G. H. Wang, J. L. Bian, J. J. Tang, C. Chen, J. J. Diao, F. C. Wang, Q. Wang, B. Cheng,B. Wu, X. L. Wang, Q. Lin, Experimental Investigation of RF Phase Noise Transfer in Acousto-Optic Modulators for Atom Gravimeters, Opt Express,33(14) 566014 (2025).
[4] K. X. Weng, Q. Wang, J. L. Bian, P. S. Ding, C. Chu, G. H. Wang, J. J. Tang, J. J. Diao, F. C. Wang, B. Cheng,B. Wu, X. L.Wang, Q. Lin, Research on the effects of inconsistent initial velocity of the atom clouds in atom gravity gradiometers, Opt Lett, 50(11) 3664 (2025).
[5] J. Wang, Z. Q. Wang, S. Hua, Y. Wang, X. L.Wang, G. W. Sun, X. M. Tang, S. Q.Wang, Z. X. Jin, C. J. Zhai, B. Wu, B. Cheng, H. L. Wang, Y. Zhou, K. X. Weng, Q. L. Zhang, Q. Lin, Nonlinear focusing of atom clouds by a short-focal-length magnetic lens, Opt Express, 33(13) 28111 (2025).
[6] J. S. Tan, B. Wu, B. Cheng, P. S. Ding, K. X. Weng, D. Zhu, K. N. Wang, X. L.Wang, Q. Lin, Measurement of Raman beam inclination changes in a cold atom gravimeter based on Raman beam interference, Chinese Optics Letters, 23(11) 111104 (2025).
[7] Y. Shi, Z. Chen, Y. Zhang, Y. Wang, P. He, X. Zhu, Y. Zheng, Y. Wang, L. Guo, B. Wu, A Mobile Electric Field Sensor Device Based on Optically Levitated Nano-resonators, Advanced Devices & Instrumentation, 6(1) 0090 (2025).
[8] Z. K. Qiao, J. J. Zhang, P. Yuan, L. Li, R. Hu, H. X. Yang, K. X. Weng, Z.Y. Zhang, L. F. Wang, P. Qin, L. Hao, C. Yang, X .F. Lv, X .M. Wu, B. Wu, X. L. Wang, Q. Lin, Application of gravity gradient measurement in the detection of urban underground space, Journal of Applied Geophysics, 237(1) 105700 (2025).(通讯作者)
[9] Z. K. Qiao, P. Yuan, R. Hu, L. L. Li, K. X. Weng, H. X. Yang, Z.Y. Zhang, J. J. Zhang, D. Zhu, X. M. Wu, X. L. Wang, B. Wu, Q. Lin, Feasibility Study on Using Atomic Gravimeters for Detecting Urban Underground Spaces, IEEE T Instrum Meas, 74(1) 9519211 (2025).(通讯作者)
[10] Z. K. Qiao, Z. H. Shen, R. Hu, L. L. Li, P. Yuan, G. C. Wu, Y. Yuan, Y. Zhou, B. Wu, Q. Lin, A vibration compensation approach for shipborne atomic gravimeter based on particle swarm organization, Scientific reports, 15(1) 8864 (2025).(通讯作者)
[11]Y. Zhou, C. Zhang, Q. L. Chen, Z. H. Wang, K. N. Wang, Z. X. Ma, Y. Yanag, R. Li, B. Wu, X. L. Wang, Q. Lin, Stability of Quantum Gravimeter in Long-term Continuous Oceanic Gravity Measurement, 25(21) 39478 (2025).
[12] K. N. Wang, L. M. Wu, B. Cheng, X. Y. Niu, W. W. Yuan, X. C. Guo, C. Zhang, Y. zhou, K. X. Weng, Y. F. Han, B. Wu, Q. Lin, Accurate Evaluation of the Scale Factor for a gPhone Relative Gravimeter With a Stable Cold Atom Gravimeter, 25(17) 32326 (2025).
[13] P. J.Chen, S. P. Peng, J. Wang, M. Gao, X. F. Lv, D. Yang, Z. F.Jin, Y. Wang, X. M. Tang, B. Wu, X. L.Wang, B. Cheng, Q. Lin, An Airborne Design of Inertial Stabilized Platform for Cold Atom Gravimeter, Ieee Sensors Journal, 25(8) 13102 (2025).
[14] S. N. Bao, B. Wu, P. F. Cao, X. C.Guo, Y. P. Zhao, D. R. Li, J. Y. Niu, C. Zhang, B. Cheng, K. X.Weng, X. L.Wang, Q. Lin, Realization of the Compact Magneto-Optical Trap Based on Single Laser with Frequency Modulation, Photonics, 12(2) 98 (2025).
[15] K. X. Weng, Y. Zhou, B. Wu, B. Cheng, B. Guo, Q. Lin, Transportable quantum gravimeter and its applications in geophysics, Chinese Journal of Geophysics, 67(12) 4166 (2024).
[16] D. Zhu, N. K. Liu, B. Cheng, P. F. Cao, B. Wu, K. X.Wang, L. M.Wu, K. N.Weng, Y. Zhou, J. L. Bian, X. L.Wang, Q. Lin, Impact of the frequency error of direct digital synthesizers on the evaluation of two-photon light shift in atom gravimeters, Opt Express, 32(23) 40554 (2024).(通讯作者)
[17] Y. P. Zhao, D. R. Li, J. Y. Niu, S. N. Bao, K. J. Zhang, Y. C. Wang, B. Cheng, C. Zhang, K. X. Niu, Y. Z. Liu, Y. Z. Yue, X. L. Wang, B. Wu, Q. Lin, The Implementation of a Compact Cold Atom Interference Gyroscope Based on Miniaturized Quartz Vacuum Chamber, Ieee Sensors Journal, 24(24) 40507 (2024).(通讯作者)
[18] B. Wu, Y. P. Zhao, Y. Zhou, W. W. Yuan, D. R. Li, S. N. Bao, D. Zhu, B. Cheng, L. Y. Wu, J. C. Zhou, Z. K. Qiao, X. L. Wang, Q. Lin, Construction of Absolute Gravity Benchmark Offshore With an Atomic Gravimeter, Ieee Sensors Journal, 24(15) 23527 (2024).(第一作者)
[19] B. Wu, D. R. Li, Y. Zhou, D. Zhu, Y. P. Zhao, Z. K. Qiao, B. Cheng, J. Y. Niu, X. C. Guo, X. L. Wang, Q. Lin, Construction of a Test Field for Relative Gravimeters in a Cave With a Cold Atom Gravimeter, Ieee Sensors Journal, 24(7) 9536 (2024).(第一作者)
[20] K. X. Weng, Y. Zhou, B. Wu, B. Cheng, B. Guo, Q. Lin, Transportable quantum gravimeter and its applications in geophysics, Chinese Journal of Geophysics-Chinese Edition, 67(12) 4611 (2024).
[21] K. X. Weng, C. Chu, J. L. Bian, X. H. Zhang, F. C. Wang, Q. Wang, P. S. Ding, B. Wu, B. Cheng, Q. Lin, Modulation of the Differential Phase in Atom Gravity Gradiometer via a Bias Magnetic Field, Ieee Sensors Journal, 24(24) 40518 (2024).
[22] Z. K. Qiao, Z. Y. Zhang, R. Hu, Z. H. Shen, P. Yuan, H. Zhou, X. Y. Huang, F. Zhou, H. Y. Shi, X. M. Wu, B. Wu, X. L. Wang, Q. Lin, Joint Inversion of Gravity and Gravity Gradient Data Based on Cross-Gradient Function, Ieee Sensors Journal, 24(13) 20940 (2024).
[23] Z. K. Qiao, P. Yuan, R. Hu, H. Zhou, Q. Y. Wang, J. J. Zhang, L. Zhu, D. Zhu, H. Y. Shi, F. Zhou, B. Wu, Y. Zhou, Q. Lin, Analysis and Processing of Vibration Interference Error of Oceanic Absolute Gravity Measurement Based on Variational Mode Decomposition, Ieee Sensors Journal, 24(7) 10620 (2024).
[24] J. C. Gao, J. J. Chen, L. X. Ye, B. Cheng, B. Wu, H. L. Wang, X. L. Wang, Q. Lin, Research on Fiber Raman Laser Source for Mobile Quantum Gravimeter, Acta Photonica Sinica, 53(8) 0814003 (2024).
[25] P. J. Chen, M. R. Jiang, X. F. Lv, H. Zhou, D. Yang, Y. Zhou, Z. Jin, S. P. Peng, Research on the application of inertially stabilized platform in the dynamic measurement of cold atomic gravimeter, Heliyon, 10(1) 23936 (2024).
[26] P.J. Chen, Y. Zhou, D. Zhu, K. N. Wang, C. Zhang, S. P. Peng, B. Cheng, B. Wu, Q. Lin, The research on the effect of dynamic tilt variation on the phase of cold atomic gravimeter Appl Phys B, 130(7) 111 (2024).
[27] J. Chen, J. Gao, J. Zhou, L. Ye, B. Wu, B. Cheng, H. Wang, X. Wang, Q. Lin, Research on Laser Automatic Frequency Locking System Based on Modulation Transfer Spectroscopy, Acta Photonica Sinica, 53(12) 1214001 (2024).
[28] 翁堪兴, 卞景龙, 张晓慧, 王飞辰, 程冰, 吴彬, 林强, 量子重力梯度仪在矿产勘探中的应用, 第二届全国矿产勘查大会, 中国山东威海, 255 (2023).
[29] 乔中坤, 袁鹏, 张宗宇, 李林玲, 张家俊, 吴彬, 林强, 基于改进变分模态分解算法的海洋绝对重力数据滤波处理, 地质论评, 69(1) 385 (2023).
[30] Y. Zhou, C. Zhang, P. J. Chen, B. Cheng, D. Zhu, K. N. Wang, X. L. Wang, B. Wu, Z. K. Qiao, Q. Lin, R. Li, A Testing Method for Shipborne Atomic Gravimeter Based on the Modulated Coriolis Effect Sensors, 23(2) 881 (2023).
[31] Z. K. Qiao , P. Yuan, J. J. Zhang, Z. Y. Zhang, L. L. Lin, D. Zhu, M. R. Jiang ,H. Y. Shi, R. Hu, F. Zhou, Q. Y. Wang, Y. Zhao,Y. Zhou, B. Wu, Q. Lin, Error Analysis and Filtering Methods for Absolute Ocean Gravity Data,Ieee Sensors Journal,23 (13) 14346 (2023).
[32] L. X. Ye, Y. P. Xu, Q. W. Wang, B. Cheng, B. Wu, H. L. Wang, Q. Lin, Optimization and control of cold atom interference phase shift based on laser double-sideband suppression, Acta Phys Sin,72(2) 024204 (2023).
[33] B. Wu, Y. P. Zhao, Z. K. Yang, D. R. Li, K. J. Zhang, X. C. Cao, Q. Lin, Z. H. Hu, Improving diameter measurement from Fraunhofer diffraction with fringe segment splicing, Opt Lett, 48(3) 624 (2023).(第一作者)
[34] B. Wu, C. Zhang, K. N. Wang, B. Cheng, D. Zhu, R. Li, X. L. Wang, Q. Lin, Z. K. Qiao, Y. Zhou, Marine Absolute Gravity Field Surveys Based on Cold Atomic Gravimeter, Ieee Sensors Journal, 23(20) 24292 (2023).(第一作者)
[35] Z. K. Qiao, P. Yuan, J. J. Zhang, Z. Y. Zhang, L. L. Li, D. Zhu, M. R. Jiang, R. Hu, F. Zhou, Q.Y. Wang, Error analysis and filtering methods for absolute ocean gravity data, Ieee Sensors Journal, 23(13) 14346 (2023).
[36] B. Wu, C. Zhang, K. N. Wang, B. Cheng, D. Zhu, R. Li, X. L. Wang, Q. Lin, Z. K. Qiao, Y. Zhou, Marine Absolute Gravity Field Surveys Based on Cold Atomic Gravimeter, IEEE Sensors Journal, 23(20) 24292 (2023).(第一作者)
[37] D. Z. Li, W. F. He, S. N. Shi, B. Wu, Y. H. Xiao, Q. Lin, L. Li, Review of Atom Chips for Absolute Gravity Sensors, Sensors, 23(11) 5089 (2023).
[38] D. Zhu, H. Xu, Y. Zhou, B. Wu, B. Cheng, K. N. Wang, P. J. Chen, S. T. Gao, K. X. Weng, H. L. Wang, S. P. Peng, Z. K. Qiao, X. L. Wang, Q. Lin, Data processing of shipborne absolute gravity measurement based on extended Kalman filter algorithm, Acta Phys. Sin. , 71(13) 133702 (2022).(通讯作者)
[39] Y. P. Zhao, Y. T. Lin, D. R. Li, F. C. Wang, B. Cheng, Q. Lin, Z. H. Hu, B. Wu, Improved Accuracy for Measurement of Filament Diameter Based on Image-Based Fitting Method, Photonics, 9(8) 556 (2022).(通讯作者)
[40] B. Wu, Y. P. Zhao, B. Cheng, C. Zhang, D. R. Li, D. Zhu, Y. Z. Yue, J. Li, K. J. Zhang, Q. Lin, K. X. Weng, A Simplified Laser System for Atom Interferometry Based on a Free-Space EOM, Photonics, 9(301) 1 (2022).(第一作者)
[41] K. X. Weng, B. Wu, F. C. Wang, X. H. Zhang, Y. Zhou, B. Cheng, Q. Lin, The Influence of Temperature on Frequency Modulation Spectroscopy in Atom Gravimeter, Sensors, 22(24) 9935 (2022).
[42] X. L. Wang, G. W. Sun, B. Cheng, B. Wu, H. L. Wang, Z. Y. Wang, J. Wang, C. L. Chen, L. M. Wu, S. H. Chang, Spatial filtering of Zeeman sub-states in an atomic fountain, Opt Express, 30(12) 22088 (2022).
[43] K. N. Wang, H. Xu, Y. Zhou, Y. P. Xu, W. Song, H. Z. Tang, Q. W. Wang, D. Zhu, K. X. Weng, H. L. Wang, S. P. Peng, X. L. Wang, B. Cheng, D. Z. Li, Z. K. Qiao, B. Wu, Q. Lin, Research on rapid surveying and mapping of outfield absolute gravity based on vehicle-mounted atomic gravimeter, Acta Phys. Sin. , 71(15) 159101 (2022).(通讯作者)
[44] H. L. Wang, K. N. Wang, Y. P. Xu, Y. T. Tang, B. Wu, B. Cheng, L. Y. Wu, Y. Zhou, K. X. Weng, D. Zhu, P. J. Chen, K. J. Zhang, Q. Lin, A Truck-Borne System Based on Cold Atom Gravimeter for Measuring the Absolute Gravity in the Field, Sensors, 22(16) 6172 (2022).(通讯作者)
[45] Z. K. Qiao, P. Yuan, L. F. Wang, Z. H. Zhang, Y. S. Huang, J. J. Zhang, L. L. Li, Z. Y. Zhang, B. Wu, Q. Lin, Research on aeromagnetic compensation of a multi-rotor UAV based on robust principal component analysis, Journal of Applied Geophysics, 206(1) 104791 (2022).(通讯作者)
[46] Z. K. Qiao, P. Yuan, R. Hu, L. F. Wang, L. L. Li, Z. Y. Zhang, J. J. Zhang, B. Wu, Q. Lin, Research on aeromagnetic data error analysis and processing of multi-rotor UAV based on variational mode decomposition algorithm, Heliyon, 8(11) e11808 (2022).(通讯作者)
[47] B. Cheng, P. J. Chen, Y. Zhou, K. N. Wang, D. Zhu, L. Chu, K. X. Weng, H. L. Wang, S. P. Peng, X. L. Wang, B. Wu, Q. Lin, Experiment on dynamic absolute gravity measurement based on cold atom gravimeter, Acta Phys. Sin. , 71(2) 026701 (2022).(通讯作者)
[48] 王凯楠, 程冰, 周寅, 陈佩军, 朱栋, 翁堪兴, 王河林, 彭树萍, 王肖隆, 吴彬, 林强, 量子绝对重力仪在地震预报中的应用, 地震地磁观测与研究, 42(S1) 167 (2021).
[49] D. Zhu, Y. Zhou, B. Wu, K. X. Weng, K. Wang, B. Cheng, Q. Lin, Metrological traceability method for atomic absolute gravimeters, Appl Optics, 60(26) 7910 (2021).
[50] D. Zhu, S. Gao, X. X. Zhu, B. Wu, B. Cheng, Q. Lin, ,Progress of Quantum Gravimeter Applied in the Fields of Earth Science, Advance in Earth Sciences, 36(5) 480 (2021).
[51] G. D. Yang, K. X. Weng, B. Wu, B. Cheng, Q. Lin,,Research Progress of Quantum Gravity Gradiometer, Navigation Positioning and Timing, 8(2) 18 (2021).
[52] K. X. Weng, Y. Zhou, D. Zhu, K. N. Wang, B. Wu, B. Cheng, Q. Lin, High-accuracy gravity measurement with miniaturized quantum gravimeter, Scientia Sinica Physica, Mechanica & Astronomica, 51(7) 074204 (2021).
[53] K. N. Wang, B. Cheng, Y. Zhou, P. J. Chen, D. Zhu, K. X. Weng, H. L. Wang, S. P. Peng, X. L. Wang, B. Wu, Q. Lin, Phase locking technology for Raman laser system based on 1560 nm external cavity lasers, Acta Phys. Sin. , 70(17) 170303 (2021).(通讯作者)
[54] W. Song, X. X. Zhu, B. Wu, H. L. Wang, Q. Lin, Research on laser frequency stabilization characteristics based on multi-parameter correlation of modulation transfer spectrum, Acta Optica Sinica, 50(11) 1114003 (2021).
[55] W. Song, X. X. Zhu, B. Wu, H. L. Wang, Q. Lin, Research on laser frequency stabilization characteristics based on multi-parameter correlation of modulation transfer spectrum, Acta Optica Sinica, 50(11) 1114003 (2021).
[56] Y. Zhou, L. Y. Wu, B. Wu, B. Cheng, H. L. Wang, L. W. Chen, S. T. Gao, Q. Lin, Fourier-domain modeling of gravity effects caused by a vertical polyhedral prism, with application to a water reservoir storage process, Geophysics, 85(6) G115 (2020).
[57] Y. Zhou, D. Y. Luo, B. Wu, B. Cheng, Q. Lin, Active vibration isolation system based on the LADRC algorithm for atom interferometry, Appl Optics, 59(11) 3487 (2020).
[58] L. Q. Zhang, Y. Zhou, K. X. Weng, B. Cheng, B. Wu, Q. Lin, Z. H. Hu, The gravity estimation with square-root unscented Kalman filter in the cold atom gravimeter, Eur Phys J D, 74(7) 147 (2020).
[59] B. Wu, Y. Zhou, B. Cheng, D. Zhu, K. N. Wang, X. X. Zhu, P. J. Chen, K. X. Weng, Q. H. Yang, J. H. Lin, K. J. Zhang, H. L. Wang, Q. Lin, Static measurement of absolute gravity in truck based on atomic gravimeter, Acta Phys. Sin , 69(6) 060302 (2020).(第一作者)
[60] K. X. Weng, B. Wu, J. H. Lin, Y. Zhou, B. Cheng, Q. Lin, A compact magneto-optical trap with a quartz vacuum chamber for miniature gravimeters, Journal of the Optical Society of America B, 37(6) 1637 (2020).(共同第一作者)
[61] C. Ji, Z. X. Wang, G. Yang, J. Wang, L. M. Wu, H. L. Wang, B. Wu, B. Cheng, C. L. Chen, G. W. Sun, S. H. Chang, N. Zhang, X. L. Wang, Q. Lin, Precise Tilt Platform Using Position Sensitive Detector and Control Method for Tilt Angle, Acta Optica Sinica, 40(19) 1912001 (2020).
[62] L. Y. Wu, L. W. Chen, B. Wu, B. Cheng, Q. Lin, Improved Fourier modeling of gravity fields caused by polyhedral bodies: with applications to asteroid Bennu and comet 67P/Churyumov–Gerasimenko, Journal of Geodesy, 93(10) 1963 (2019).
[63] B. Wu, D. Zhu, B. Cheng, L. M. Wu, K. N. Wang, Z. Y. Wang, Q. Shu, R. Li, H. L. Wang, X. L. Wang, Q. Lin, Dependence of the sensitivity on the orientation for a free-fall atom gravimeter, Opt. Express, 27(8) 11252 (2019).(第一作者)
[64] B. Wu, B. Cheng, Z. J. Fu, D. Zhu, L. M. Wu, K. N. Wang, H. L. Wang, Z. Y. Wang, X. L. Wang, Q. Lin, Influence of Raman laser sidebands effect on the measurement accuracy of cold atom gravimeter, Acta Phys. Sin. , 68(19) 194205 (2019).(第一作者)
[65] H. L. Wang, A. J. Yang, B. Wu, Z. Zheng, K. Li, Raman competition from ultra-broadband modulation instability gain in the As2Se3 glass photonic crystal fiber filled with argon gas, Optics & Laser Technology, 123(1) 105935 (2019).
[66] P. X. Miao, W. Q. Zheng, S. Y. Yang, B. Wu, B. Cheng, J. H. Tu, H. L. Ke, W. Yang, J. Wang, J. Z. Cui, Wide-range and self-locking atomic magnetometer based on free spin precession, Journal of the Optical Society of America B 36(4) 819 (2019).
[67] Z. J. Fu, B. Wu, B. Cheng, Y. Zhou, K. X. Weng, D. Zhu, Z. Y. Wang, Q. Lin, A new type of compact gravimeter for long-term absolute gravity monitoring, Metrologia, 56(2) 025001 (2019).(通讯作者)
[68] Z. J. Fu, Q. Y. Wang, Z. Y. Wang, B. Wu, B. Cheng, Q. Lin, Participation in the absolute gravity comparison with a compact cold atom gravimeter, Chin. Opt. Lett, 17(1) 011204 (2019).
[69] B. Wu, Y. Zhou, K. X. Weng, D. Zhu, Z. J. Fu, B. Cheng, X. L. Wang, Q. Lin, Modulation transfer spectroscopy for D1 transition line of rubidium, Journal of the Optical Society of America B, 35(11) 2705 (2018).(第一作者)
[70] B. Wu, B. Cheng, Z. J. Fu, D. Zhu, Y. Zhou, K. X. Weng, X. L. Wang, Q. Lin, Measurement of absolute gravity based on cold atom gravimeter at large tilt angle, Acta Phys. Sin.,67(19)190302 (2018).(第一作者)
[71] H. L. Wang, A. J. Yang, X. L. Wang, B. Wu, Y. Ruan, Pressure dependent modulation instability in photonic crystal fiber filled with argon gas, Chinese Phys B, 27(9) 026701 (2018). [72] D. Y. Luo, C. Bing, Z. Yin, W. Bin, X. L. Wang, L. Qiang, Ultra-low frequency active vibration control for cold atom gravimeter based on sliding-mode robust algorithm, Acta Phys. Sin. , 67(2) 020702 (2018).
[73] 罗东云, 程冰, 吴彬, 林强, 用于冷原子干涉仪激光时序控制的DDS跳频系统设计与实现, 计算机测量与控制, 25(9),(9) 83 (2017).
[74] D.Y. Luo, B. Cheng, B. Wu, X.L. Wang, Q. Lin, Design of an active low frequency vibration isolation system for atom interferometry by using sliding mode control, Stavební obzor-Civil Engineering Journal, 28(4)2019041(2017).
[75] H. L. Wang, B. Wu, X. L. Wang, Ultra-broadband modulation instability gain characteristics in As2S3 and As2Se3 chalcogenide glass photonic crystal fiber, Chinese Phys B, 25(6) 064207 (2016).
[76] 吴彬, 王兆英, 程冰, 王启宇, 许翱鹏, 林强, 微伽级冷原子重力仪研究, 物探与化探, 39(S1) 47 (2015).(第一作者)
[77] 吴彬, 王肖隆, 王河林, 王兆英, 林强, 冷原子干涉型重力仪的发展现状与趋势, 导航与控制, 14(2) 2 (2015).(第一作者)
[78] B. Wu, Z. Y. Wang, B. Cheng, Q. Y. Wang, A. P. Xu, Q. Lin, The investigation of a muGal-level cold atom gravimeter for field applications, Metrologia, 51(5) 452 (2014).(第一作者)
[79] B. Wu, Z. Y. Wang, B. Cheng, Q. Y. Wang, A. P. Xu, D. L. Kong, Q. Lin, Experimental verification of the Breit–Rabi formula in the case of clock transition by using the spectroscopy method, Journal of the Optical Society of America B 31(4) 742 (2014).(第一作者)
[80] B. Cheng, Z. Y. Wang, B. Wu, A. P. Xu , Q. Y. Wang, Y. F. Xu, Q. Lin, Laser frequency stabilization and shifting by using modulation transfer spectroscopy, Chin. Phys. B, 23(10) 104222 (2014).
[81] B. Cheng, Z. Y. Wang,B. Wu, A. P. Xu, Q. Y. Wang, Q. Lin, The effects of the non-uniformity of Raman laser beams on an atom interferometer, Eur Phys J D, 68(11) 1 (2014).
[82] J. Zhang, Z. Y. Wang, B. Cheng, Q. Y. Wang, B. Wu, X. Shen, L. Zheng, Y. Xu, Q. Lin, Atom cooling by partially spatially coherent lasers, Phys. Rev. A, 88(2) 023416 (2013).
[83] B. Wu, Z. Y. Wang, B. Cheng, Q. Y. Wang, A. P. Xu, Q. Lin, Accurate measurement of the quadratic Zeeman coefficient of 87Rb clock transition based on the Ramsey atom interferometer, Journal of Physics B: Atomic, Molecular and Optical Physics, 47(1) 015001 (2013).(第一作者)
[84] X. L. Wang, T. J. Tao, B. Cheng, B. Wu, Y. F. Xu, Z. Y. Wang, Q. Lin, A Digital Phase Lock Loop for an External Cavity Diode Laser, Chin. Phys. Lett, 28(8) 084214 (2011).
[85] X. L. Wang, B. Cheng, B. Wu, Z. Y. Wang, Q. Lin, A Simplified Cold Atom Source for 3-D MOT Loading, Chin. Phys. Lett, 28(5) 053701 (2011).
二:奖项
1.“基于冷原子干涉的重力精密测量技术与应用”获2020年度浙江省技术发明奖一等奖,级别:省级,颁奖单位:浙江省人民政府,时间:2021/05,排名3/6。
2.“国内首套小型化高精度ZAG-E型冷原子绝对重力仪研制成功并应用”获2019年度地质科技十大进展,级别:国家级,颁奖单位:中国地质调查局、中国地质科学院,时间:2020/01,排名3/15。
3.“高精度量子绝对重力仪”项目获第七届“创青春”中国青年创新创业大赛-航天科工杯全国银奖,级别:国家级,颁奖单位:共青团中央,时间:2020/11,排名3/11。
4.“冷原子干涉型绝对重力仪核心技术研发与应用”获2020年中国产学研合作创新成果奖二等奖,级别:行业协会,颁奖单位:中国产学研合作促进会,时间:2021/01,排名3/9。
5.“微伽量子——突破国外技术封锁的重力测量大国重器”获第五届“互联网+”全国大学生创新创业大赛银奖,级别:国家级,颁奖单位:教育部,时间:2019/01,排名4/10。
三:授权发明专利
1)吴彬、张灿等。一种用于测量细丝直径的衍射条纹识别处理方法,ZL202210171661.5。
2)吴彬、周寅、程冰等。一种可移动冷原子绝对重力加速度传感器,ZL201710128755.3。
3)赵英鹏、吴彬等。一种通过频域计算细丝衍射条纹的直径测量方法,ZL202210522420.0。
4)张柳青、吴彬等。一种基于冷原子干涉型重力仪的重力值估计方法,ZL201910499629.8。
5)王肖隆、杨钢、冀聪、王子轩、王晶、陈春霖、吴彬等。通过光学干涉方法实时读取位移转动信息的三自由度纳米定位平台,201910265406.5。
6)李德钊、吴彬等。一种全玻璃碱金属原子气室的制备方法,ZL201910237761.1。
7)翁堪兴、吴彬等。用于冷原子干涉型重力仪中拉曼光锁相的鉴频鉴相器,ZL201710566477.X。
8)翁堪兴、吴彬等。一种可控的机械快门挡光装置,ZL201710545327.0。
9)翁堪兴、吴彬等。用于冷原子干涉型重力仪可快速开关恒流源,ZL201710043698.9。
10)罗东云、程冰、吴彬等。用于冷原子干涉仪激光时序控制的DDS跳频装置,ZL201611033563.6。
11)翁堪兴、吴彬等。用于冷原子干涉型重力仪中磁光阱磁场的快速开关装置,ZL201610645305.7。
12)罗东云、吴彬等。超低频地脉振动原子干涉仪隔振方法,ZL201610590524.X。
13)翁堪兴、吴彬等。用于冷原子干涉型重力仪中地磁场补偿的恒流源,ZL201710043698.9。
14)林强、吴彬等。Method for measuring the diameter of filament diffraction fringes by calculating the frequency domain(中国同族名称:一种通过频域计算细丝衍射条纹的直径测量方法),US12196540B2。
15)吴彬、鲍淑宁等。一种单激光调制小型磁光阱,ZL202411172539.5。
16)林强、王子轩、李德钊、吴彬等。一种基于透射式堆叠原子芯片的冷原子捕获装置,ZL202411069821.0。
17)吴彬、何温锋等。一种用于制备超冷原子的微型芯片及方法,ZL202410972218.7。
18)吴彬、何温锋等。一种基于外部金字塔型MOT的原子芯片冷原子真空物理装置,ZL202410867811.5。
19)翁堪兴、吴彬等。一种用于冷原子干涉型重力仪原子数探测装置及方法,ZL202210293287.6。