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February 12, 2026Universe3 citationsOpen Access

The Impact of Dark Matter on Gravitational Wave Detection by Space-Based Interferometers

YCYuehua ChenPWPan-Pan WangBWBo Wang

Key Points

  • The aim is to review the relationship between dark matter and gravitational wave detection by future space-based interferometers.
  • Summarized main dark matter candidates and their distributions
  • Highlighted mechanisms for dark matter's impact on gravitational waves
  • Discussed the influence on compact-object orbits and dynamics
  • Identified modifications to orbits of compact objects affecting gravitational wave signals
  • Outlined gravitational lensing effects that alter waveform amplitudes and phases
  • Explored direct couplings of dark matter fields with gravitational wave detectors

Abstract

The existence of dark matter is supported by multiple astrophysical observations, yet its particle nature remains unknown. The development of gravitational wave astronomy, especially with future space-based detectors such as LISA, provides new opportunities to study the interactions between dark matter and compact-object systems. This review summarizes the main dark matter candidates and their macroscopic distributions, and highlights three mechanisms through which dark matter can affect gravitational wave observations: (1) modifications to compact-object orbits and the dynamics of systems such as extreme mass-ratio inspirals, including dark matter spikes, dynamical friction, and potential perturbations; (2) gravitational lensing effects induced by the spatial distribution of dark matter, altering waveform amplitudes and phases; and (3) direct couplings between ultralight dark matter fields and detectors. As low-frequency gravitational wave detection techniques are proposed and continue to develop, these effects may offer a novel avenue for probing the properties of dark matter, and combining precise waveform modeling with multi-messenger observations could reveal insights into its microscopic structure.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/698d6f0d5be6419ac0d551cehttps://doi.org/10.3390/universe12020048
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