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20242026
most citedTowards Realistic Detection Pipelines of Taiji: New Challenges in Data Analysis and High-Fidelity Simulations of Space-Based Gravitational Wave Antenna

8 citations · 8 across the 3 of their papers we have counts for

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gr-qc20268 cited

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…

gr-qc2025

Source Confusion of Massive Black Hole Binaries for the Taiji Mission

Qing Diao, Hongxin Wang, Manjia Liang +4

We systematically investigate the source confusion of massive black hole binaries (MBHBs) for the Taiji space-based gravitational wave mission. Source confusion, arising from the o…

gr-qc2025

Recent Advances in Simulation-based Inference for Gravitational Wave Data Analysis

Bo Liang, He Wang

The detection of gravitational waves by the LIGO-Virgo-KAGRA collaboration has ushered in a new era of observational astronomy, emphasizing the need for rapid and detailed paramete…

gr-qc2024

Gravitational Wave Signal Denoising and Merger Time Prediction By Deep Neural Network

Yuxiang Xu, He Wang, Minghui Du +2

The mergers of massive black hole binaries could generate rich electromagnetic emissions, which allow us to probe the environments surrounding these massive black holes and gain de…

gr-qc2024

Rapid Parameter Estimation for Merging Massive Black Hole Binaries Using Continuous Normalizing Flows

Bo Liang, Minghui Du, He Wang +6

Detecting the coalescences of massive black hole binaries (MBHBs) is one of the primary targets for space-based gravitational wave observatories such as LISA, Taiji, and Tianqin. T…

gr-qc2024

Gravitational Wave Signal Extraction Against Non-Stationary Instrumental Noises with Deep Neural Network

Yuxiang Xu, Minghui Du, Peng Xu +2

Sapce-borne gravitational wave antennas, such as LISA and LISA-like mission (Taiji and Tianqin), will offer novel perspectives for exploring our Universe while introduce new challe…