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From the 1 of 6 linked papers with an AI index.

most citedDistinguishing Monochromatic Signals in LISA and Taiji: Ultralight Dark Matter versus Gravitational Waves

2 citations · 2 across the 3 of their papers we have counts for

collaborators

6 papers

gr-qc2026

Testing the Transverse Scalar Mode of Gravitational Quantum Field Theory with Taiji and LISA

Cong Xu, Yong Tang, Yue-Liang Wu

The paper investigates how the transverse scalar (breathing) polarization predicted by Gravitational Quantum Field Theory can be detected with space‑based gravitational‑wave detect…

hep-ph20262 cited

Distinguishing Monochromatic Signals in LISA and Taiji: Ultralight Dark Matter versus Gravitational Waves

Heng-Tao Xu, Yue-Hui Yao, Yong Tang +1

Ultralight dark matter (ULDM) is an attractive candidate for cold dark matter, one of the main mysterious components of the Universe. Recent studies suggest that gravitational-wave…

gr-qc2026

Construction of Sensitivity Curves for Dynamic LISA and Taiji

Hong-Yu Shi, Yong Tang

Space-based gravitational-wave (GW) laser interferometers, including LISA and Taiji, are designed to observe gravitational waves in the millihertz band and are expected to open up…

hep-ph2026

Signatures of Ultralight Dark Matter in Space-Based Laser Interferometers

Tingyuan Jiang, Yong Tang

Ultralight dark matter (ULDM) coupled to the Standard Model may effectively induce coherent oscillations of fundamental constants and thereby generate narrow-band signals in precis…

hep-ph2025

Identifying Monochromatic Signals in LISA and Taiji via Spectral Split: Gravitational Waves versus Ultralight Dark Matter

Yue-Hui Yao, Tingyuan Jiang, Wenyan Ren +3

The detection of gravitational waves (GWs) has opened a new window to explore the dark Universe. Ultralight dark matter (ULDM), an attractive candidate for dark matter, might induc…

hep-ph2025

Prospects for Axion Dark Matter Searches at LISA-like Interferometers

Yue-Hui Yao, Tingyuan Jiang, Yong Tang

Axion or axionlike particles are one of the leading candidates for dark matter. Because of its tiny coupling with photons, axion dark matter in the background can induce distinct p…