From the 3 of 81 papers with an AI index.
38 citations
- California Institute of TechnologyUS6 papers
- Institute of Theoretical PhysicsCN6 papers
- Carnegie Mellon UniversityUS5 papers
- Centre National de la Recherche ScientifiqueFR5 papers
- Chinese Academy of SciencesCN5 papers
- Princeton UniversityUS5 papers
- University of Chinese Academy of SciencesCN5 papers
- University of MichiganUS5 papers
- University of ZurichCH5 papers
- Centro de Investigaciones Energéticas, Medioambientales y TecnológicasES4 papers
- ETH ZurichCH4 papers
- Georgia Institute of TechnologyUS4 papers
5 papers · 1 filter
Fundamental Physics and Cosmology with TianQin
Jun Luo, Haipeng An, Ligong Bian +33
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 g…
Unifying topological, geometric, and complex classifications of black hole thermodynamics
Shi-Hao Zhang, Shao-Wen Wei, Jing-Fei Zhang +1
Black hole thermodynamics has recently witnessed three distinct classification schemes: based on local geometric properties of the temperature function, global topological invarian…
Interior geometry of black holes as a probe of first-order phase transition
Zi-Qiang Zhao, Zhang-Yu Nie, Shao-Wen Wei +2
Traditional diagnostics of black hole phase transitions rely on thermodynamic quantities defined at the event horizon or asymptotic boundary. Here, we demonstrate that the near-sin…
Gaussian curvature and Lyapunov exponent as probes of black hole phase transitions
Shi-Hao Zhang, Zi-Qiang Zhao, Zi-Yuan Li +2
First-order phase transitions of black holes have been extensively studied within thermodynamic frameworks, yet the corresponding evolution of spacetime geometric properties remain…
Towards Realistic Detection Pipelines of Taiji: New Challenges in Data Analysis and High-Fidelity Simulations of Space-Based Gravitational Wave Antenna
Minghui Du, Pengcheng Wang, Ziren Luo +23
Taiji, a Chinese space-based gravitational wave (GW) detection project, aims to explore the millihertz GW universe with unprecedented sensitivity. By observing astrophysical and co…