基本信息
徐鹏  男  博导  中国科学院力学研究所
电子邮件: xupeng@imech.ac.cn
通信地址: 北京市怀柔区北房镇雁栖南四街26号中国科学院力学研究所
邮政编码:

招生信息

   
招生专业
070201-理论物理
085400-电子信息
070207-光学
招生方向
引力波探测,引力波物理
相对论性引力理论实验检验
引力波探测数据处理,光学仿真

工作经历

   
工作简历
2021-07~现在, 中国科学院力学研究所, 研究员
2019-09~2021-06,兰州大学, 教授
2016-03~2019-09,中国科学院数学与系统科学研究院, 助理研究员
社会兼职
2021-09-01-2024-08-31,兰州大学兼职教授,

出版信息

   
发表论文
[1] 李浩思, 邓琼, 徐鹏, 强丽娥, 王长青, 肖云, 鲁宝亮, 韦禹肖, 陈道雨. 低低跟踪重力卫星高精度微波测距系统数据预处理与分析. 地球物理学报[J]. 2023, 66(5): 1945-1959, http://www.geophy.cn/article/doi/10.6038/cjg2022Q0227.
[2] Zhilan Yang, Haoyue Zhang, Peng Xu, Ziren Luo. Unsupervised Noise Reductions for Gravitational Reference Sensors or Accelerometers Based on the Noise2Noise Method. Sensors[J]. 2023, 23(13): 6030-, [3] Minghui Du, Qiong Deng, Yifan Bian, Ziren Luo, Peng Xu. Probing supermassive black hole binaries with orbital resonances of laser-ranged satellites. The European Physical Journal C[J]. 2023, 83: 554-, [4] Haoyue Zhang, Peng Xu, Zongqi Ye, Dong Ye, LiE Qiang, Ziren Luo, Keqi Qi, Shaoxin Wang, Zhiming Cai, Zuolei Wang, Jungang Lei, Yueliang Wu. A Systematic Approach for Inertial Sensor Calibration of Gravity Recovery Satellites and Its Application to Taiji-1 Mission. REMOTE SENSING[J]. 2023, 15: https://doaj.org/article/8523c7b1b1714333a6776c0c5c70ff05.
[5] Li, Xiaokang, Liu, Heshan, Wu, Pengzhan, Li, Haosi, Xu, Peng, Luo, Ziren. Proof-of-principle Experimental Demonstration of Time-delay-interferometry for Chinese Space-borne Gravitational Wave Detection Missions. MICROGRAVITY SCIENCE AND TECHNOLOGY[J]. 2022, 34(4): [6] Yang, Yuchan, Han, WenBiao, Yun, Qianyun, Xu, Peng, Luo, Ziren. Tracing astrophysical black hole seeds and primordial black holes with LISA-Taiji network. MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY[J]. 2022, 512(4): 6217-6224, http://dx.doi.org/10.1093/mnras/stac920.
[7] Wang, Chenyu, Liu, Wei, Niu, Yu, Xu, Peng, Jin, Gang. Approach to quantitative detection of proteins with the biosensor based on imaging ellipsometry and spectroscopic ellipsometry. THIN SOLID FILMS[J]. 2022, 763: http://dx.doi.org/10.1016/j.tsf.2022.139578.
[8] Wang, Gang, Li, Bin, Peng Xu, Fan, Xilong. Characterizing instrumental noise and stochastic gravitational wave signals from combined time-delay interferometry. PHYSICAL REVIEW D[J]. 2022, 106: 44054-, [9] Du, Minghui, Deng, Qiong, Bian, Yifan, Luo, Ziren, Xu, Peng. Probing Supermassive Black Hole Binaries with Orbital Resonances of Laser-Ranged Satellite. 2022, http://arxiv.org/abs/2207.01100.
[10] Wu, Liming, Xu, Peng, Zhao, Shuhong, Qiang, LiE, Luo, Ziren, Wu, Yueliang. Global Gravity Field Model from Taiji-1 Observations. MICROGRAVITY SCIENCE AND TECHNOLOGY[J]. 2022, 34(4): http://dx.doi.org/10.1007/s12217-022-09998-5.
[11] Peng, Xiaodong, Jin, Hongbo, Xu, Peng, Wang, Zhi, Luo, Ziren, Ma, Xiaoshan, Qiang, LiE, Tang, Wenlin, Ma, Xin, Zhang, Yuzhu, Wang, Zuolei, Wu, Pengzhan, Deng, Xiaoqin, Li, Haosi, Wu, Liming, Wang, Juan, Wei, Yuxiao, Lin, Zhiyong, Gao, Chen, Zhao, Mengyuan. System modeling in data processing of Taiji-1 mission. INTERNATIONAL JOURNAL OF MODERN PHYSICS A[J]. 2021, 36(11N12): http://dx.doi.org/10.1142/S0217751X21400261.
[12] Wu, YueLiang, Luo, ZiRen, Wang, JianYu, Bai, Meng, Bian, Wei, Cai, HaiWen, Cai, RongGen, Cai, ZhiMing, Cao, Jin, Chen, Bin, Chen, DiJun, Chen, GuangFeng, Chen, Kun, Chen, Ling, Chen, LiSheng, Chen, MingWei, Chen, WeiBiao, Chen, Yan, Chen, ZeYi, Chi, YiXing, Cong, LinXiao, Deng, JianFeng, Deng, XiaoQin, Dong, XiaoLong, Duan, Li, Fan, Da, Fan, SenQuan, Fan, ShouShan, Fang, Chao, Fang, Yuan, Feng, Ke, Feng, JianChao, Feng, Pan, Feng, Zhun, Gao, Chen, Gao, RuiHong, Gao, RunLian, Guo, Bin, Guo, Tong, Guo, XiaoLiang, Guo, Xu, Guo, ZongKuan, He, JianWu, He, JiBo, Hou, Xia, Hu, Liang, Hu, WenRui, Hu, ZhiQiang, Huang, MinJie, Jia, JianJun, Jiang, KaiLi, Jin, Gang, Jin, HongBo, Kang, BaoPeng, Kang, Qi, Kong, FengLian, Lei, JunGang, Li, BoQuan, Li, CunHui, Li, DongJing, Li, Fan, Li, HaoSi, Li, HuaDong, Li, HuaWang, Li, Jiang, Li, LiuFeng, Li, Wei, Li, XiaoKang, Li, YingMin, Li, YongGui, Li, YunPeng, Li, YuPeng, Li, Zhao, Li, Zhe, Liang, Hong, Lin, Huang, Lin, ZhiYong, Liu, Chang, Liu, DongBin, Liu, HeShan, Liu, Hong, Liu, Peng, Liu, YuRong, Lu, ZongYu, Luo, HongWei, Luo, Jun, Ma, FuLi, Ma, LongFei, Ma, XiaoShan, Ma, Xin, Man, YiChuan, Mao, JunCheng, Min, Jian, Niu, Yu, Peng, JianKang, Peng, XiaoDong, Qi, KeQi, Qiang, LiE, Qiao, CongFeng, Qu, YeXi, Ruan, WenHong, Sha, Wei, Shen, Jia, Shi, XingJian, Shu, Rong, Su, Ju, Su, Peng, Sui, YanLin, Sun, GuangWei, Tan, HePing, Tang, WenLin, Tao, HongJiang, Tao, WenZe, Tian, Zheng, Wan, LingFeng, Wang, ChenYu, Wang, Jia, Wang, Juan, Wang, JunBiao, Wang, LinLin, Wang, PengCheng, Wang, ShaoXin, Wang, XiaoPeng, Wang, YanFeng, Wang, YuKun, Wang, Zhi, Wang, ZuoLei, Wei, YongQiang, Wei, YuXiao, Wu, Di, Wu, LiMing, Wu, PengZhan, Wu, ZhiHua, Xi, DongXue, Xie, YiFang, Xin, GuoFeng, Xu, HengTong, Xu, LuXiang, Xu, Peng, Xu, ShuYan, Xu, Yu, Xue, Bing, Xue, DaTong, Xue, SenWen, Xue, ZhangBin, Yang, Chao, Yang, Ran, Yang, ShiJia, Yang, Shuang, Yang, Yong, Yang, ZhongGuo, Yin, YongLi, Yu, DuLi, Yu, JinPei, Yu, Tao, Zhang, AiBing, Zhang, Bing, Zhang, Chu, Zhang, Min, Zhang, Jing, Zhang, RuiJun, Zhang, XiaoFeng, Zhang, XiaoQing, Zhang, XueQuan, Zhang, YongHe, Zhang, YuZhu, Zhang, YuanZhong, Zhao, MengYuan, Zhao, Jian, Zhao, WeiWei, Zhao, Ya, Zheng, JianHua, Zhou, CuiYun, Zhou, Ying, Zhu, Ren, Zhu, XiaoCheng, Zhu, XiaoYi, Zhu, ZhenCai, Zou, XiaoBo, Zou, ZiMing, Taiji Sci Collaboration. Taiji program in space for gravitational universe with the first run key technologies test in Taiji-1. INTERNATIONAL JOURNAL OF MODERN PHYSICS A[J]. 2021, 36(11-12): http://dx.doi.org/10.1142/S0217751X21020024.
[13] Jin, HongBo, Xu, Peng. The pipeline of data processing for TAIJI-1 space mission in the TAIJI program for the detection of gravitational wave. INTERNATIONAL JOURNAL OF MODERN PHYSICS A[J]. 2021, 36(11N12): http://dx.doi.org/10.1142/S0217751X2140025X.
[14] Wu, YueLiang, Luo, ZiRen, Wang, JianYu, Bai, Meng, Bian, Wei, Cai, RongGen, Cai, ZhiMing, Cao, Jin, Chen, DiJun, Chen, Ling, Chen, LiSheng, Chen, MingWei, Chen, WeiBiao, Chen, ZeYi, Cong, LinXiao, Deng, JianFeng, Dong, XiaoLong, Duan, Li, Fan, SenQuan, Fan, ShouShan, Fang, Chao, Fang, Yuan, Feng, Ke, Feng, Pan, Feng, Zhun, Gao, RuiHong, Gao, RunLian, Guo, ZongKuan, He, JianWu, He, JiBo, Hou, Xia, Hu, Liang, Hu, WenRui, Hu, ZhiQiang, Huang, MinJie, Jia, JianJun, Jiang, KaiLi, Jin, Gang, Jin, HongBo, Kang, Qi, Lei, JunGang, Li, BoQuan, Li, DongJing, Li, Fan, Li, HaoSi, Li, HuaWang, Li, LiuFeng, Li, Wei, Li, XiaoKang, Li, YingMin, Li, YongGui, Li, YunPeng, Li, YuPeng, Li, Zhe, Lin, ZhiYong, Liu, Chang, Liu, DongBin, Liu, HeShan, Liu, Hong, Liu, Peng, Liu, YuRong, Lu, ZongYu, Luo, HongWei, Ma, FuLi, Ma, LongFei, Ma, XiaoShan, Ma, Xin, Man, YiChuan, Min, Jian, Niu, Yu, Peng, JianKang, Peng, XiaoDong, Qi, KeQi, Qiang, LiE, Qiao, CongFeng, Qu, YeXi, Ruan, WenHong, Sha, Wei, Shen, Jia, Shi, XingJian, Shu, Rong, Su, Ju, Sui, YanLin, Sun, GuangWei, Tang, WenLin, Tao, HongJiang, Tao, WenZe, Tian, Zheng, Wan, LingFeng, Wang, ChenYu, Wang, Jia, Wang, Juan, Wang, LinLin, Wang, ShaoXin, Wang, XiaoPeng, Wang, YuKun, Wang, Zhi, Wang, ZuoLei, Wei, YuXiao, Wu, Di, Wu, LiMing, Wu, PengZhan, Wu, ZhiHua, Xi, DongXue, Xie, YiFang, Xing, GuoFeng, Xu, LuXiang, Xu, Peng, Xu, ShuYan, Xu, Yu, Xue, SenWen, Xue, ZhangBin, Yang, Chao, Yang, Ran, Yang, ShiJia, Yang, Shuang, Yang, Yong, Yang, ZhongGuo, Yin, YongLi, Yu, JinPei, Yu, Tao, Zhang, AiBing, Zhang, Chu, Zhang, Min, Zhang, XueQuan, Zhang, YuanZhong, Zhao, Jian, Zhao, WeiWei, Zhao, Ya, Zheng, JianHua, Zhou, CuiYun, Zhu, ZhenCai, Zou, XiaoBo, Zou, ZiMing, Taiji Sci Collaboration. China's first step towards probing the expanding universe and the nature of gravity using a space borne gravitational wave antenna. COMMUNICATIONS PHYSICS[J]. 2021, 4(1): https://doaj.org/article/a51ad5ea0a16417dbc672b81bc75fd08.
[15] Wang, Gang, Ni, WeiTou, Han, WenBiao, Xu, Peng, Luo, Ziren. Alternative LISA-TAIJI networks. PHYSICAL REVIEW D[J]. 2021, 104(2): http://dx.doi.org/10.1103/PhysRevD.104.024012.
[16] Xu, Peng, Qiang, LiE. De Broglie relations, gravitational time dilation and weak equivalence principle. ANNALS OF PHYSICS[J]. 2019, 400: 128-137, http://dx.doi.org/10.1016/j.aop.2018.11.007.
[17] Xu, Peng, Qiang, LiE. Secular gravity gradients in non-dynamical Chern-Simons modified gravity for satellite gradiometry measurements. EUROPEAN PHYSICAL JOURNAL C[J]. 2018, 78(12): http://ir.amss.ac.cn/handle/2S8OKBNM/31959.
[18] Tang Wenlin, Xu Peng, Hu Songjie, Cao Jianfeng, Dong Peng, Bu Yanlong, Chen Lue, Han Songtao, Gong Xuefei, Li Wenxiao, Ping Jinsong, Lau YunKau, Tang Geshi. Chang’e 3 lunar mission and upper limit on stochastic background of gravitational wave around the 0.01 Hz band. ADVANCES IN SPACE RESEARCH[J]. 2017, [19] Xu Peng. Gravitational wave detection in space---a new window in astronomy. SCIENTIA SINICA Physica, Mechanica & Astronomica. 2017, [20] Qiang, LiE, Xu, Peng. Probing the post-newtonian physics of semi-conservative metric theories through secular tidal effects in satellite gradiometry missions. INTERNATIONAL JOURNAL OF MODERN PHYSICS D[J]. 2016, 25(6): http://dx.doi.org/10.1142/S021827181650070X.
[21] Qiang, LiE, Zhao, Shu Hong, Xu, Peng. Measuring the dimensionality of compact extra dimensions with inspiral gravitational waves from black-hole binaries. EPL[J]. 2016, 116(6): http://dx.doi.org/10.1209/0295-5075/116/60001.
[22] Xu, Peng, Paik, Ho Jung. First-order post-Newtonian analysis of the relativistic tidal effects for satellite gradiometry and the Mashhoon-Theiss anomaly. PHYSICAL REVIEW D[J]. 2016, 93(4): http://dx.doi.org/10.1103/PhysRevD.93.044057.
[23] Qiang, LiE, Xu, Peng. Testing Chern-Simons modified gravity with orbiting superconductive gravity gradiometers: the non-dynamical formulation. GENERAL RELATIVITY AND GRAVITATION[J]. 2015, 47(3): https://www.webofscience.com/wos/woscc/full-record/WOS:000350690000010.
[24] YUAN Yefei, BAI Shan, BIAN Xing, CAO Zhoujian, CHEN Gerui, DONG Peng, GONG Xuefei, XU Shengnian, GAO Tianshu, GAO Wei, HUANG Shuanglin, LUO Ziren, SHAO Mingxue, SUN Baosan, TANG Wenlin, Yu Pin, XU Peng, ZANG Yunlong, ZHANG Haipeng, LAU Yunkau. Laser Interferometric Gravitational Wave Detection in Space and Structure Formation in the Early Universe. CHINESE ASTRONOMY AND ASTROPHYSICS. 2015, 39(4): 411-446, http://dx.doi.org/10.1016/j.chinastron.2015.10.001.
[25] 龚雪飞, 徐生年, 袁业飞, 白姗, 边星, 曹周键, 陈葛锐, 董鹏, 高天舒, 高伟, 黄双林, 李玉龙, 刘影, 罗子人, 邵明学, 孙宝三, 唐文林, 于品, 徐鹏, 臧云龙, 张海鹏, 刘润球. 空间激光干涉引力波探测与早期宇宙结构形成. 天文学进展[J]. 2015, 33(1): 59-, https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CJFQ&dbname=CJFDLAST2015&filename=TWJZ201501004&v=MTA3MDR1eFlTN0RoMVQzcVRyV00xRnJDVVI3cWZidVp0RkN2aFc3M0lNVHJCZExHNEg5VE1ybzlGWUlSOGVYMUw=.
[26] Qiang, LiE, Xu, Peng. Signature of biased range in the non-dynamical Chern-Simons modified gravity and its measurements with satellite-satellite tracking missions: theoretical studies. EUROPEAN PHYSICAL JOURNAL C[J]. 2015, 75(8): http://dx.doi.org/10.1140/epjc/s10052-015-3610-7.
[27] Peng Xu, Lie Qiang, Xing Bian, Peng Dong, Peng Ju, Wei Gao, Xuefei Gong, Ziren Luo, Mingxue Shao, Wenlin Tang, Xiaoyun Wan, YunKau Lau. A preliminary study of level 1A data processing of a low–low satellite to satellite tracking mission. GEODESY AND GEODYNAMICS[J]. 2015, 6(5): 333-343, http://dx.doi.org/10.1016/j.geog.2015.07.005.
[28] 罗子人, 钟敏, 边星, 董鹏, 董玉辉, 高伟, 李洪银, 李玉琼, 刘河山, 冉将军, 邵明学, 唐文林, 徐鹏, 杨然, 靳刚. 地球重力场空间探测:回顾与展望. 力学进展[J]. 2014, 291-337, http://lib.cqvip.com/Qikan/Article/Detail?id=76887490504849524848484856.
[29] Gong XF, Lau YK, Xu SN, Amaro-Seoane P, Bai S, Bian X, Cao ZJ, Chen GR, Chen X, Ding YW, Dong P, Gao W, Heinzel G, Li M, Li S, Liu FK, 罗子人, Shao MX, Spurzem R, Sun BS, Tang WL, Wang Y, Xu P, Yu P, Yuan YF, Zhang XM, Zhou ZB. Descope of the ALIA mission. JOURNAL OF PHYSICS CONFERENCE SERIES,V.610null. 2014, http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000358149000011&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=3a85505900f77cc629623c3f2907beab.
[30] 罗子人, 白姗, 边星, 陈葛瑞, 董鹏, 董玉辉, 高伟, 龚雪飞, 贺建武, 李洪银, 李向前, 李玉琼, 刘河山, 邵明学, 宋同消, 孙保三, 唐文林, 徐鹏, 徐生年, 杨然, 靳刚. 空间激光干涉引力波探测. 力学进展[J]. 2013, 43(4): 415-, https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CJFQ&dbname=CJFD2013&filename=LXJZ201304004&v=MTc5MzF0RkNybVU3dklLVFhCZExHNEg5TE1xNDlGWUlSOGVYMUx1eFlTN0RoMVQzcVRyV00xRnJDVVI3cWZidVo=.
[31] Gong, Xuefei, Xu, Shengnian, Bai, Shan, Cao, Zhoujian, Chen, Gerui, Chen, Yanbei, He, Xiaokai, Heinzel, Gerhard, Lau, YunKau, Liu, Chenzhou, Luo, Jun, Luo, Ziren, Paton, Antonio Pulido, Ruediger, Albrecht, Shao, Mingxue, Spurzem, Rainer, Wang, Yan, Xu, Peng, Yeh, HsienChi, Yuan, Yefei, Zhou, Zebing. A scientific case study of an advanced LISA mission. CLASSICAL AND QUANTUM GRAVITY[J]. 2011, 28(9): http://ir.bao.ac.cn/handle/114a11/7919.
[32] Xu, Peng, Ma, Yongge. Emergence of scalar matter from spin foam model. PHYSICAL REVIEW D[J]. 2009, 80(10): https://www.webofscience.com/wos/woscc/full-record/WOS:000272313300059.
[33] Xu, Peng, Ma, Yongge. Five-dimensional PPN formalism and experimental test of Kaluza-Klein theory. PHYSICS LETTERS B[J]. 2007, 656(4-5): 165-168, https://www.webofscience.com/wos/woscc/full-record/WOS:000251499200001.
[34] Chenyu Wang, Wei Liu, Yu Niu, Peng Xu, Gang Jin. Approach to Quantitative Detection for Proteins with the Biosensor Based on Imaging Ellipsometry and Spectroscopic Ellipsometry. THIN SOLID FILMS. http://dx.doi.org/10.1016/j.tsf.2022.139578.
[35] Blair, David, Ju, Li, Zhao, Chunnong, Wen, Linqing, Chu, Qi, Fang, Qi, Cai, RongGen, Gao, JiangRui, Lin, XueChun, Liu, Dong, Wu, Ling-An, Zhu, ZongHong, Reitze, David H., Arai, Koji, Zhang, Fan, Flaminio, Raffaele, Zhu, Xingjiang, Hobbs, George, Manchester, Richard N., Shannon, Ryan M., Baccigalupi, Carlo, Xu, Peng, Bian, Xing, Cao, Zhoujian, Chang, ZiJing, Dong, Peng, Gong, XueFei, Huang, ShuangLin, Ju, Peng, Luo, ZiRen, Qiang, Li'E, Tang, WenLin, Wan, XiaoYun, Wang, Yue, Xu, ShengNian, Zhang, YunLong, Zhang, HaiPeng, Lau, Yun-Kau, Ni, Wei-Tou. Gravitational wave astronomy: the current status. http://arxiv.org/abs/1602.02872.
[36] Xu, Peng, Wang, Zhi, Qiang, Li-E. Towards Constraining Parity-Violations in Gravity with Satellite Gradiometry. http://arxiv.org/abs/1901.01253.

科研活动

   
科研项目
( 1 ) 惯性传感器地面综合评价方法, 负责人, 国家任务, 2020-12--2025-11
( 2 ) 温度结构相关扰动测试, 负责人, 国家任务, 2020-12--2025-11
( 3 ) 激光干涉系统数据预处理技术研究, 负责人, 中国科学院计划, 2020-07--2021-12
( 4 ) 地面综合测试方法, 负责人, 中国科学院计划, 2020-07--2021-12
( 5 ) 惯性拖曳效应精密测量方案研究, 负责人, 中国科学院计划, 2019-06--2020-12
( 6 ) 一级数据处理, 负责人, 中国科学院计划, 2018-06--2020-12
( 7 ) 传感器的系统理论分析与仿真, 负责人, 中国科学院计划, 2018-06--2020-12
( 8 ) 惯性传感器耦合噪声认知, 负责人, 企业委托, 2021-02--2021-12
( 9 ) 惯性传感器噪声分析与数据处理, 负责人, 中国科学院计划, 2018-07--2019-08
( 10 ) 星载激光锁臂稳频与时间延迟干涉总体系统评价, 负责人, 国家任务, 2021-12--2026-12
( 11 ) 中国科学院率先行动BR计划, 负责人, 中国科学院计划, 2021-11--2024-11
( 12 ) 四号KBR星间指向定标与质量评定软件研制项目, 负责人, 企业委托, 2022-11--2023-12
( 13 ) 高精度扭秤弱力测量系统测试评价, 负责人, 企业委托, 2022-12--2023-06
( 14 ) 星载加速度计标准产品生产软件, 负责人, 企业委托, 2022-01--2023-06

指导学生

已指导学生

杨智岚  硕士研究生  085404-计算机技术  

现指导学生

王晨昱  博士研究生  080101-一般力学与力学基础  

沈嘉  博士研究生  080101-一般力学与力学基础  

范梦宇  博士研究生  080104-工程力学  

姚镇东  硕士研究生  085400-电子信息  

段宗超  硕士研究生  085400-电子信息