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Updated: May 10, 2026

Implementation of a Reference Interferometer for Nanodetection
Published on: April 26, 2014
New probe of dark-matter properties: gravitational waves from an intermediate-mass black hole embedded in a
Kazunari Eda1, Yousuke Itoh, Sachiko Kuroyanagi
1Research center for the early universe, School of Science, University of Tokyo, Tokyo 113-0033, Japan. eda@resceu.s.u-tokyo.ac.jp
Abstract:
An intermediate-mass black hole (IMBH) may have a dark-matter (DM) minihalo around it and develop a spiky structure within less than a parsec from the IMBH. When a stellar mass object is captured by the minihalo, it eventually infalls into such an IMBH due to gravitational wave backreaction which in turn could be observed directly by future space-borne gravitational wave experiments such as eLISA and NGO. In this Letter, we show that the gravitational wave (GW) detectability strongly depends on the radial profile of the DM distribution. So if the GW is detected, the power index, that is, the DM density distribution, would be determined very accurately. The DM density distribution obtained would make it clear how the IMBH has evolved from a seed black hole and whether the IMBH has experienced major mergers in the past. Unlike the γ-ray observations of DM annihilation, GW is just sensitive to the radial profile of the DM distribution and even to noninteracting DM. Hence, the effect we demonstrate here can be used as a new and powerful probe into DM properties.
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