Fundamental Physics and Cosmology with TianQin
Jun Luo, Haipeng An, Ligong Bian, Rong-Gen Cai, Zhoujian Cao, Wenbiao, Han, Jianhua He, Martin A. Hendry, Bin Hu, Yi-Ming Hu, Fa Peng Huang,, Shun-Jia Huang, Sang Pyo Kim, En-Kun Li, Yu-Xiao Liu, Vadim Milyukov, Shi Pi,, Konstantin Postnov, Misao Sasaki, Cheng-Gang Shao

TL;DR
TianQin, a space-based gravitational wave detector, will explore the millihertz spectrum to uncover new astrophysical phenomena, test fundamental physics, and enhance our understanding of the universe's evolution.
Contribution
This paper outlines the potential of TianQin to advance fundamental physics and cosmology through gravitational wave detection in a new frequency range.
Findings
Detection of new astrophysical systems at various redshifts
High-precision parameter estimation for gravitational wave sources
Potential to test general relativity and explore new physics
Abstract
The exploration of the surrounding world and the universe is an important theme in the legacy of humankind. The detection of gravitational waves is adding a new dimension to this grand effort. What are the fundamental physical laws governing the dynamics of the universe? What is the fundamental composition of the universe? How has the universe evolved in the past and how will it evolve in the future? These are the basic questions that press for answers. The space-based gravitational wave detector TianQin will tune in to gravitational waves in the millihertz frequency range ( Hz, to be specific), opening a new gravitational wave spectrum window to explore many of the previously hidden sectors of the universe. TianQin will discover many astrophysical systems, populating the universe at different redshifts: some will be of new types that have never been detected before,…
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