TianQin: a space-borne gravitational wave detector

TianQin: космический детектор гравитационных волн
Jun Luo, Li-Sheng Chen, Hui-Zong Duan, Yun-Gui Gong, Shoucun Hu, Jianghui Ji, Qi Liu, Jianwei Mei, Vadim Milyukov, Mikhail Sazhin, Cheng-Gang Shao, Viktor T Toth, Hai-Bo Tu, Yamin Wang, Yan Wang, Hsien-Chi Yeh, Ming-Sheng Zhan, Yonghe Zhang, Vladimir Zharov, Ze-Bing Zhou
2016-01-12

TianQindrag-free spacecraftlaser interferometrymillihertz gravitational wavesspace-borne gravitational wave detector
Abstract 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 to monitor the distances between the test masses. The experiment is designed to be capable of detecting a signal with high confidence from a single source of gravitational waves within a few months of observing time. We describe the preliminary mission concept for TianQin, including the candidate source and experimental designs. We present estimates for the major constituents of the experiment’s error budget and discuss the project’s overall feasibility. Given the current level of technological readiness, we expect TianQin to be flown in the second half of the next decade.
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Based on current technological readiness, the mission was expected to launch in the second half of the next decade.
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The experiment is designed to detect a high-confidence gravitational-wave signal from a single source within several months of observation.
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The mission uses three drag-free spacecraft orbiting Earth, with inter-spacecraft laser interferometry measuring distances between test masses.
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The preliminary mission concept includes candidate sources, experimental designs, error-budget estimates, and an assessment of overall feasibility.
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TianQin is proposed as a space-borne gravitational-wave detector targeting millihertz frequencies.

TianQin space-borne gravitational-wave detector consisting of three drag-free spacecraft in Earth orbit

preliminary mission design, candidate gravitational-wave sources, error budget, detection capability, and overall feasibility in the millihertz frequency band

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Publication Date
2016-01-12
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Authors
Jun Luo
Li-Sheng Chen
Hui-Zong Duan
Yun-Gui Gong
Shoucun Hu
Jianghui Ji
Qi Liu
Jianwei Mei
Vadim Milyukov
Mikhail Sazhin
Cheng-Gang Shao
Viktor T Toth
Hai-Bo Tu
Yamin Wang
Yan Wang
Hsien-Chi Yeh
Ming-Sheng Zhan
Yonghe Zhang
Vladimir Zharov
Ze-Bing Zhou
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