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相关论文: Analyses of residual accelerations for TianQin bas…

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TianQin (TQ) project plans to deploy three satellites in space around the Earth to measure the displacement change of test masses caused by gravitational waves via laser interferometry. The requirement of the acceleration noise of the test…

天体物理仪器与方法 · 物理学 2023-12-01 Wei Su , Ze-Bing Zhou , Yan Wang , Chen Zhou , P. F. Chen , Wei Hong , J. H. Peng , Yun Yang , Y. W. Ni

The space-borne gravitational wave observatory is to detect low-frequency gravitational wave signals in the range of 0.1 mHz to 100 mHz. The inertial sensors of space gravitational wave require very high accuracy for acceleration noise, and…

空间物理 · 物理学 2025-02-17 Peng Jia-Hui , Zhang Ji-Xiang , Hong W , Su Wei , Ni Yi-Wei , Guo Jin-Han , Zheng Rui-Sheng

TianQin is a proposed geocentric space-based gravitational wave observatory mission, which requires time-delay interferometry (TDI) to cancel laser frequency noise. With high demands for precision, solar-wind plasma environment at $\sim…

广义相对论与量子宇宙学 · 物理学 2022-12-26 Yi-De Jing , Lu Zheng , Shutao Yang , Xuefeng Zhang , Lingfeng Lu , Binbin Tang , Wei Su

The TianQin(TQ) program is to deploy three satellites that can form an equilateral triangle in about 100,000 km Earth orbit to capture gravitational wave signals in the low-frequency band. In order to ensure accurate capture, noise needs to…

广义相对论与量子宇宙学 · 物理学 2025-09-05 Cheng-Long Yu , Jin Yan , Lin Ji , Wen-Ke Shi , Yi Zhang , Run-Qiu Liu , Hong-Qing Huo

TianQin is a proposed space-based gravitational wave detector designed to operate in circular high Earth orbits. As a sequel to [Zhang et al. Phys. Rev. D 103, 062001 (2021)], this work provides an analytical model to account for the…

天体物理仪器与方法 · 物理学 2023-06-29 Lei Jiao , Xuefeng Zhang

TianQin is a proposed space-borne gravitational wave (GW) observatory composed of three identical satellites orbiting around the geocenter with a radius of $10^5$ km. It aims at detecting GWs in the frequency range of 0.1 mHz -- 1 Hz. The…

太阳与恒星天体物理 · 物理学 2021-06-30 Wei Su , Yan Wang , Chen Zhou , Lingfeng Lu , Ze-Bing Zhou , T. Li , Tong Shi , Xin-Chun Hu , Ming-Yue Zhou , Ming Wang , Hsien-Chi Yeh , Han Wang , P. F. Chen

TianQin proposes to detect gravitational wave signals by using laser interferometry. However, laser propagation effect introduces a potential noise factor for TianQin. In this work, we used MHD simulations to obtain the space magnetic field…

太阳与恒星天体物理 · 物理学 2024-10-15 Liu YaNan , Su Wei , Zhang XueFeng , Zhang JiXiang , Zhou ShenWei

The TianQin space Gravitational Waves (GW) observatory will contain 3 geocentric and circularly orbiting spacecraft with an orbital radius of 10^5 km, to detect the GW in the milli-hertz frequency band. Each spacecraft pair will establish a…

空间物理 · 物理学 2021-03-16 Ling-Feng Lu , Wei Su , Xuefeng Zhang , Zhao-Guo He , Hui-Zong Duan , Yuan-Ze Jiang , Hsien-Chi Yeh

TianQin is a proposal for a space-borne detector of gravitational waves in the millihertz frequencies. The experiment relies on a constellation of three drag-free spacecraft orbiting the Earth. Inter-spacecraft laser interferometry is used…

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.…

For space-borne gravitational wave detectors,such as LISA and TianQin ,the disturbance caused by the coupling of test masses and the external magnetic fields is one of the main sources of the residual acceleration noise. Although the…

仪器与探测器 · 物理学 2025-03-05 Yuanyang Yu , Butian Zhang , Shengxin Lin , Jianping Liang , Donghua Pan , Shun Wang , Ze-Bing Zhou

The gravitational wave memory effect is a prediction of general relativity. The presence of memory effect in gravitational wave signals not only provides the chance to test an important aspect of general relativity, but also represents a…

广义相对论与量子宇宙学 · 物理学 2023-02-17 Shuo Sun , Changfu Shi , Jian-dong Zhang , Jianwei Mei

TianQin is a space-based laser interferometric gravitational wave detector aimed at detecting gravitational waves at low frequencies (0.1 mHz -- 1 Hz). It is formed by three identical drag-free spacecrafts in an equilateral triangular…

广义相对论与量子宇宙学 · 物理学 2018-04-18 Xin-Chun Hu , Xiao-Hong Li , Yan Wang , Wen-Fan Feng , Ming-Yue Zhou , Yi-Ming Hu , Shou-Cun Hu , Jian-Wei Mei , Cheng-Gang Shao

TianQin is a proposed space-based gravitational-wave detector mission to be deployed and operated in high Earth orbits. As a sequel to [Zhang et al. Phys. Rev. D 103, 062001 (2021)], we investigate a type of ``orbital noise'' in TianQin's…

广义相对论与量子宇宙学 · 物理学 2023-09-06 Kun Liu , Chengjian Luo , Xuefeng Zhang

TianQin is a proposed space gravitational-wave detection mission using circular high Earth orbits. The geocentric concept has raised questions about the disturbing effect of the nearby gravity field of the Earth-Moon system on the…

广义相对论与量子宇宙学 · 物理学 2021-03-17 Xuefeng Zhang , Chengjian Luo , Lei Jiao , Bobing Ye , Huimin Yuan , Lin Cai , Defeng Gu , Jianwei Mei , Jun Luo

TianQin is a future space-based gravitational wave observatory targeting the frequency window of $10^{-4}$ Hz $\sim 1$ Hz. A large variety of gravitational wave sources are expected in this frequency band, including the merger of massive…

The proposed space-borne laser interferometric gravitational wave (GW) observatory TianQin adopts a geocentric orbit for its nearly equilateral triangular constellation formed by three identical drag-free satellites. The geocentric distance…

天体物理仪器与方法 · 物理学 2021-06-02 Ming-Yue Zhou , Xin-Chun Hu , Bobing Ye , Shoucun Hu , Dong-Dong Zhu , Xuefeng Zhang , Wei Su , Yan Wang

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…

广义相对论与量子宇宙学 · 物理学 2020-08-25 Jianwei Mei , Yan-Zheng Bai , Jiahui Bao , Enrico Barausse , Lin Cai , Enrico Canuto , Bin Cao , Wei-Ming Chen , Yu Chen , Yan-Wei Ding , Hui-Zong Duan , Huimin Fan , Wen-Fan Feng , Honglin Fu , Qing Gao , TianQuan Gao , Yungui Gong , Xingyu Gou , Chao-Zheng Gu , De-Feng Gu , Zi-Qi He , Martin Hendry , Wei Hong , Xin-Chun Hu , Yi-Ming Hu , Yuexin Hu , Shun-Jia Huang , Xiang-Qing Huang , Qinghua Jiang , Yuan-Ze Jiang , Yun Jiang , Zhen Jiang , Hong-Ming Jin , Valeriya Korol , Hong-Yin Li , Ming Li , Ming Li , Pengcheng Li , Rongwang Li , Yuqiang Li , Zhu Li , Zhulian Li , Zhu-Xi Li , Yu-Rong Liang , Zheng-Cheng Liang , Fang-Jie Liao , Shuai Liu , Yan-Chong Liu , Li Liu , Pei-Bo Liu , Xuhui Liu , Yuan Liu , Xiong-Fei Lu , Yang Lu , Ze-Huang Lu , Yan Luo , Zhi-Cai Luo , Vadim Milyukov , Min Ming , Xiaoyu Pi , Chenggang Qin , Shao-Bo Qu , Alberto Sesana , Chenggang Shao , Changfu Shi , Wei Su , Ding-Yin Tan , Yujie Tan , Zhuangbin Tan , Liang-Cheng Tu , Bin Wang , Cheng-Rui Wang , Fengbin Wang , Guan-Fang Wang , Haitian Wang , Jian Wang , Lijiao Wang , Panpan Wang , Xudong Wang , Yan Wang , Yi-Fan Wang , Ran Wei , Shu-Chao Wu , Chun-Yu Xiao , Xiao-Shi Xu , Chao Xue , Fang-Chao Yang , Liang Yang , Ming-Lin Yang , Shan-Qing Yang , Bobing Ye , Hsien-Chi Yeh , Shenghua Yu , Dongsheng Zhai , Caishi Zhang , Haitao Zhang , Jian-dong Zhang , Jie Zhang , Lihua Zhang , Xin Zhang , Xuefeng Zhang , Hao Zhou , Ming-Yue Zhou , Ze-Bing Zhou , Dong-Dong Zhu , Tie-Guang Zi , Jun Luo

TianQin is a proposed space-based mission for gravitational wave detection, employing a constellation of three drag-free satellites in high Earth orbits to form a laser interferometric observatory. A critical technical challenge is…

广义相对论与量子宇宙学 · 物理学 2025-10-21 Yuzhou Fang , Dexuan Zhang , Dezhi Wang , Xuefeng Zhang , Huizong Duan , Hongyin Li , Junxiang Lian , Guoying Zhao

The paper is a sequel to our previous work (Zhang et al. Phys. Rev. D 103, 062001 (2021)). For proposed geocentric space-based gravitational wave detectors such as TianQin, gLISA, and GADFLI, the gravity-field disturbances, i.e., the so…

广义相对论与量子宇宙学 · 物理学 2022-10-11 Chengjian Luo , Xuefeng Zhang
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