activity
20152023
most citedThe TianQin project: current progress on science and technology

377 citations · 783 across the 28 of their papers we have counts for

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Showing gr-qcShow all

21 papers · 1 filter

gr-qc2023★ 3 cited

Testing Lorentz symmetry with space-based gravitational-wave detectors

Cheng-Gang Qin, Jun Ke, Qin Li +4

Lorentz symmetry (LS), one of the most fundamental physical symmetries, has been extensively studied in the context of quantum gravity and unification theories. Many of these theor…

gr-qc2022★ 4 cited

Arm locking in conjunction with time-delay interferometry

Pan-Pan Wang, Wei-Liang Qian, Han-Zhong Wu +2

A crucial challenge to the ongoing endeavor of spaceborne gravitational wave (GW) detection resides in the laser phase noise, typically 7 to 8 orders of magnitude above the inevita…

gr-qc2022★ 2 cited

Testing the polarization of gravitational wave background with LISA-TianQin network

Yu Hu, Pan-Pan Wang, Yu-Jie Tan +1

While general relativity predicts only two tensor modes for gravitational wave polarization, general metric theories of gravity allows up to four additional modes, including two ve…

gr-qc2022★ 8 cited

Qusinormal oscillations and late-time tail of massless scalar perturbations of a magnetized black hole in Rastall gravity

Cai-Ying Shao, Yu-Jie Tan, Cheng-Gang Shao +2

In this paper, we study the quasinormal mode and late-time tail of charged massless scalar perturbations of a black hole in the generalized Rastall gravity. The black hole metric i…

gr-qc2022★ 13 cited

Full analytic expression of overlap reduction function for gravitational wave background with pulsar timing arrays

Yu Hu, Pan-Pan Wang, Yu-Jie Tan +1

Pulsar timing array (PTA) is expected to detect gravitational wave background (GWB) in the nanohertz band within the next decade. This provides an opportunity to test the gravity t…

gr-qc2022★ 26 cited

Geometric approach for the modified second generation time delay interferometry

Pan-Pan Wang, Wei-Liang Qian, Yu-Jie Tan +2

The time delay interferometry (TDI) is an algorithm proposed to suppress the laser frequency noise in space-borne gravitational wave detectors. As a post-processing technique, it i…