一、文章
[1] 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).
[2] 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).
[3] Y. Zhou, C. Zhang, P. Chen, B. Cheng, D. Zhu, K. Wang, X. Wang, B. Wu, Z. Qiao, Q. Lin, R. Li, A Testing Method for Shipborne Atomic Gravimeter Based on the Modulated Coriolis Effect, Sensors, 23(2) 881 (2023).
[4] P. Yuan, Z. Qiao, D. Zhu, Y. Zhao, Y. Zhou, H. Xu, B. Wu, Q. Lin, Noise Processing of Ocean Absolute Gravity Data Based on Savitzky-golay Filtering Algorithm, Journal of Physics: Conference Series, 2651(1) 012154 (2023).
[5] L. X. Ye, Y. P. Xu, Q. W. Wang, C. Bing, W. Bin, H. L. Wang, L. Qiang, Optimization and control of cold atom interference phase shiftbased on laser double-sideband suppression, Acta Phys. Sin. , 72(2) 024204 (2023).
[6] 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)
[7] 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)
[8] Z. K. Qiao, P. Yuan, J. J. Zhang, Z. Y. Zhang, L. L. Li, D. Zhu, M. R. Jiang, H. Y. Shi, R. Hu, F. Zhou, Q. Y. Wang, Y. Zhou, B. Wu, Q. Lin, Error Analysis and Filtering Methods for Absolute Ocean Gravity Data, IEEE Sensors Journal, 23(13) 14346 (2023).(通讯作者)
[9] 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).
[10] 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)
[11] 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)
[12] 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)
[13] 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).
[14] 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).
[15] 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)
[16] 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)
[17] 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)
[18] 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)
[19] 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)
[20] 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(1) 167 (2021).
[21] D. Zhu, Y. Zhou, B. Wu, K. X. Weng, K. N. Wang, B. Cheng, Q. Lin, Metrological traceability method for atomic absolute gravimeters, Appl Optics, 60(26) 7910 (2021).
[22] D. Zhu, S. T. 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).(通讯作者)
[23] 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).
[24] 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).
[25] 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)
[26] 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).
[27] B. Cheng, Y. Zhou, P. J. Chen, K. J. Zhang, D. Zhu, K. N. Wang, K. X. Weng, H. L. Wang, S. P. Peng, X. L. Wang, B. Wu, Q. Lin, Absolute gravity measurement based on atomic gravimeter under mooring state of a ship, Acta Phys. Sin. , 70(4) 040304 (2021).(通讯作者)
[28] 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).
[29] 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).
[30] 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).
[31] 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)
[32] 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)
[33] 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).
[34] 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).
[35] 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)
[36] 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)
[37] 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).
[38] 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).
[39] 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)
[40] 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).
[41] 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)
[42] 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)
[43] 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).
[44] 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).
[45] 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) 83 (2017).
[46] H. L. Wang, B. Wu, X. L. Wang, Ultra-broadband modulation instability gain characteristics in As2S3 and As2Se3 chalcogenide glass photonic crystal fiber, Chin. Phys. B, 25(6) 064207 (2016).
[47] 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(1) 47 (2015).(第一作者)
[48] 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)
[49] 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)
[50] 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)
[51] 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).
[52] 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).
[53] J. Zhang, Z. Wang, B. Cheng, Q. 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).
[54] 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, 47(1) 015001 (2013).(第一作者)
[55] 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).
[56] 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。