5 results on '"Fang-Jie Liao"'
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2. Corrigendum to: The TianQin project: current progress on science and technology
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Shu-Chao Wu, Cheng-Gang Shao, Peng-Cheng Li, Lin Cai, Jian-dong Zhang, Chao Xue, Yu Chen, Alberto Sesana, Xuhui Liu, Yungui Gong, Xudong Wang, Yuan-Ze Jiang, Chenggang Qin, Liang Yang, Yan-Chong Liu, Yan Wang, Fang-Chao Yang, Jing Wang, Guan-Fang Wang, Pei-Bo Liu, Xiaoyu Pi, Wei Hong, TianQuan Gao, Chao-Zheng Gu, Hong-Yin Li, Ding-Yin Tan, Yuan Liu, Zhi-Cai Luo, Xin-Chun Hu, De-Feng Gu, Fengbin Wang, Xiong-Fei Lu, Yun Jiang, Zebing Zhou, Valeriya Korol, Caishi Zhang, Bobing Ye, Yan-Wei Ding, Shun-Jia Huang, Tie-Guang Zi, Yujie Tan, Changfu Shi, Zhuangbin Tan, Martin Hendry, Shao-Bo Qu, Enrico Canuto, Ming-Lin Yang, Ming Li, Hao Zhou, Haitao Zhang, Jun Luo, Lihua Zhang, Shan-Qing Yang, Vadim Milyukov, Ming-Yue Zhou, Zhu Li, Huimin Fan, Ze-Huang Lu, Qing Gao, Xiang-Qing Huang, Cheng-Rui Wang, Qi Liu, Min Ming, Chun-Yu Xiao, Ran Wei, Yang Lu, Bin Cao, Bin Wang, Yuexin Hu, Lijiao Wang, Xiao-Shi Xu, Wei-Ming Chen, Wei Su, Enrico Barausse, Fang-Jie Liao, Hong-Ming Jin, Yi-Fan Wang, Yan-Zheng Bai, Shenghua Yu, Yu-Rong Liang, Dongsheng Zhai, Liang-Cheng Tu, Jie Zhang, Hai-Tian Wang, Zheng-Cheng Liang, Honglin Fu, Zhulian Li, Panpan Wang, Qinghua Jiang, Yi-Ming Hu, Rongwang Li, Xuefeng Zhang, Jiahui Bao, Shuai Liu, Zhen Jiang, Xingyu Gou, Zhu-Xi Li, Yan Luo, Hsien-Chi Yeh, Li Liu, Zi-Qi He, Dong-Dong Zhu, Xin Zhang, Jianwei Mei, Hui-Zong Duan, Yuqiang Li, and Wen-Fan Feng
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Physics ,Systems engineering ,General Physics and Astronomy ,Current (fluid) ,Science, technology and society - Published
- 2021
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3. One-Pot Synthesis of 3-Substituted 4
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Ji-Wang, Fang, Fang-Jie, Liao, Yang, Qian, Chao-Chen, Dong, Li-Jin, Xu, and Han-Yuan, Gong
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Molecular Structure ,Alkynes - Abstract
Three-substituted 4
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- 2020
4. The TianQin project: Current progress on science and technology
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Tie-Guang Zi, Yujie Tan, Yuexin Hu, Dong-Dong Zhu, Cheng-Gang Shao, Xin Zhang, Valeriya Korol, Jianwei Mei, Rongwang Li, Jun Luo, Yang Lu, Chao-Zheng Gu, Ming-Yue Zhou, Yi-Fan Wang, Yan-Zheng Bai, Lin Cai, Jian-dong Zhang, Ran Wei, Wei Su, Xudong Wang, Xiao-Shi Xu, Caishi Zhang, Chenggang Qin, TianQuan Gao, Yan-Chong Liu, Pei-Bo Liu, Hao Zhou, Alberto Sesana, Dongsheng Zhai, Changfu Shi, Ze-Huang Lu, Yuan-Ze Jiang, Wei-Ming Chen, Huimin Fan, Guan-Fang Wang, Yu-Rong Liang, Shu-Chao Wu, Qing Gao, Yi-Ming Hu, Zhu-Xi Li, Hong-Yin Li, Peng-Cheng Li, Zhulian Li, Haitao Zhang, Jie Zhang, Xingyu Gou, Vadim Milyukov, Honglin Fu, Chao Xue, Xuhui Liu, Lihua Zhang, Cheng-Rui Wang, Liang-Cheng Tu, Yan Wang, Shan-Qing Yang, Jing Wang, Xin-Chun Hu, De-Feng Gu, Hong-Ming Jin, Liang Yang, Xuefeng Zhang, Shenghua Yu, Yun Jiang, Fengbin Wang, Yan-Wei Ding, Yan Luo, Bobing Ye, Zhi-Cai Luo, Zheng-Cheng Liang, Shun-Jia Huang, Yu Chen, Yungui Gong, Hsien-Chi Yeh, Zebing Zhou, Xiaoyu Pi, Yuan Liu, Zhu Li, Panpan Wang, Xiong-Fei Lu, Li Liu, Qinghua Jiang, Shuai Liu, Ding-Yin Tan, Qi Liu, Xiang-Qing Huang, Enrico Barausse, Min Ming, Wei Hong, Zi-Qi He, Bin Cao, Zhen Jiang, Martin Hendry, Fang-Chao Yang, Hai-Tian Wang, Jiahui Bao, Shao-Bo Qu, Hui-Zong Duan, Enrico Canuto, Ming-Lin Yang, Zhuangbin Tan, Ming Li, Chun-Yu Xiao, Lijiao Wang, Fang-Jie Liao, Yuqiang Li, Wen-Fan Feng, Bin Wang, Mei, J, Bai, Y, Bao, J, Barausse, E, Cai, L, Canuto, E, Cao, B, Chen, W, Chen, Y, Ding, Y, Duan, H, Fan, H, Feng, W, Fu, H, Gao, Q, Gao, T, Gong, Y, Gou, X, Gu, C, Gu, D, He, Z, Hendry, M, Hong, W, Hu, X, Hu, Y, Huang, S, Huang, X, Jiang, Q, Jiang, Y, Jiang, Z, Jin, H, Korol, V, Li, H, Li, M, Li, P, Li, R, Li, Y, Li, Z, Liang, Y, Liang, Z, Liao, F, Liu, Q, Liu, S, Liu, Y, Liu, L, Liu, P, Liu, X, Lu, X, Lu, Y, Lu, Z, Luo, Y, Luo, Z, Milyukov, V, Ming, M, Pi, X, Qin, C, Qu, S, Sesana, A, Shao, C, Shi, C, Su, W, Tan, D, Tan, Y, Tan, Z, Tu, L, Wang, B, Wang, C, Wang, F, Wang, G, Wang, H, Wang, J, Wang, L, Wang, P, Wang, X, Wang, Y, Wei, R, Wu, S, Xiao, C, Xu, X, Xue, C, Yang, F, Yang, L, Yang, M, Yang, S, Ye, B, Yeh, H, Yu, S, Zhai, D, Zhang, C, Zhang, H, Zhang, J, Zhang, L, Zhang, X, Zhou, H, Zhou, M, Zhou, Z, Zhu, D, Zi, T, and Luo, J
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F34 Other topics ,FOS: Physical sciences ,General Physics and Astronomy ,General Relativity and Quantum Cosmology (gr-qc) ,General Relativity and Quantum Cosmology ,law.invention ,Telescope ,Settore FIS/05 - Astronomia e Astrofisica ,Observatory ,law ,F33 ,F34 ,F30 Instrumentation and technique ,F33 Network system ,Instrumentation and Methods for Astrophysics (astro-ph.IM) ,F30 ,F31 ,Physics ,coincident signal in other radiation bands ,Gravitational wave ,Ecliptic ,Order (ring theory) ,Astronomy ,Mass ratio ,Black hole ,F31 Expectation and estimation of gravitational radiation ,Satellite ,Astrophysics - Instrumentation and Methods for Astrophysics - Abstract
TianQin is a planned space-based gravitational wave (GW) observatory consisting of three earth orbiting satellites with an orbital radius of about $10^5~{\rm km}$. The satellites will form a equilateral triangle constellation the plane of which is nearly perpendicular to the ecliptic plane. TianQin aims to detect GWs between $10^{-4}~{\rm Hz}$ and $1~{\rm Hz}$ that can be generated by a wide variety of important astrophysical and cosmological sources, including the inspiral of Galactic ultra-compact binaries, the inspiral of stellar-mass black hole binaries, extreme mass ratio inspirals, the merger of massive black hole binaries, and possibly the energetic processes in the very early universe or exotic sources such as cosmic strings. In order to start science operations around 2035, a roadmap called the 0123 plan is being used to bring the key technologies of TianQin to maturity, supported by the construction of a series of research facilities on the ground. Two major projects of the 0123 plan are being carried out. In this process, the team has created a new generation $17~{\rm cm}$ single-body hollow corner-cube retro-reflector which has been launched with the QueQiao satellite on 21 May 2018; a new laser ranging station equipped with a $1.2~{\rm m}$ telescope has been constructed and the station has successfully ranged to all the five retro-reflectors on the Moon; and the TianQin-1 experimental satellite has been launched on 20 December 2019 and the first round result shows that the satellite has exceeded all of its mission requirements., 16 pages, 1 figure, invited article to a special section in PTEP
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- 2020
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5. The First Round Result from the TianQin-1 Satellite
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Bin Cao, Xudong Wang, Shu-Chao Wu, Xingyu Gou, Jia Li, De-Feng Gu, Xiang-Qing Huang, Yan-Wei Ding, Hsien-Chi Yeh, Wei-Ming Chen, Jianwei Mei, Shuang Hu, Guan-Fang Wang, Lijiao Wang, Zhu Li, Jun Luo, Liang-Cheng Tu, Ming-Lin Yang, Yan-Chong Liu, Lihua Zhang, Yu-Rong Liang, Hong-Yin Li, Chao-Zheng Gu, Shan-Qing Yang, Lin Cai, Qu Shaobo, Zhuxi Li, Ran Wei, Pei-Bo Liu, Chun-Yu Xiao, Xiao-Shi Xu, Liang Yang, Yu Chen, Yan Luo, De-Cong Cheng, Meng-Hao Zhao, Zi-Qi He, Ming Li, Jian-Bo Yu, Yanzheng Bai, Yuexin Hu, Hui-Zong Duan, Fang-Jie Liao, Yuan Liu, Jing Wang, Xiong-Fei Lu, Mi Tang, Qinghua Jiang, Zebing Zhou, Honggang Li, Cheng-Rui Wang, Yuan-Ze Jiang, Meng-Zhe Xie, Li Liu, Xuhui Liu, Ding-Yin Tan, Min Ming, and Fengbin Wang
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Physics ,Temperature monitoring ,Physics - Instrumentation and Detectors ,Physics and Astronomy (miscellaneous) ,010308 nuclear & particles physics ,business.industry ,FOS: Physical sciences ,Thrust ,Instrumentation and Detectors (physics.ins-det) ,General Relativity and Quantum Cosmology (gr-qc) ,Residual ,01 natural sciences ,Noise (electronics) ,General Relativity and Quantum Cosmology ,Acceleration ,Optics ,0103 physical sciences ,Orbit (dynamics) ,Satellite ,010306 general physics ,business ,Sensitivity (electronics) - Abstract
The TianQin-1 satellite (TQ-1), which is the first technology demonstration satellite for the TianQin project, was launched on 20 December 2019. The first round of experiment had been carried out from 21 December 2019 until 1 April 2020. The residual acceleration of the satellite is found to be about $1\times10^{-10}~{\rm m}/{\rm s}^{2}/{\rm Hz}^{1/2}$ at $0.1~{\rm Hz}\,$ and about $5\times10^{-11}~{\rm m}/{\rm s}^{2}/{\rm Hz}^{1/2}$ at $0.05~{\rm Hz}\,$, measured by an inertial sensor with a sensitivity of $5\times10^{-12}~{\rm m}/{\rm s}^{2}/{\rm Hz}^{1/2}$ at $0.1~{\rm Hz}\,$. The micro-Newton thrusters has demonstrated a thrust resolution of $0.1~\mu{\rm N}$ and a thrust noise of $0.3~\mu{\rm N}/{\rm Hz}^{1/2}$ at $0.1~{\rm Hz}$. The residual noise of the satellite with drag-free control is $3\times10^{-9}~{\rm m}/{\rm s}^{2}/{\rm Hz}^{1/2}$ at $0.1~{\rm Hz}\,$. The noise level of the optical readout system is about $30~{\rm pm}/{\rm Hz}^{1/2}$ at $0.1~{\rm Hz}\,$. The temperature stability at temperature monitoring position is controlled to be about $\pm3~{\rm mK}$ per orbit, and the mismatch between the center-of-mass of the satellite and that of the test mass is measured with a precision of better than $0.1~{\rm mm}$., Comment: 17 pages, 11 figures
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- 2020
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