Gravitational wave detection based on gravitomagnetic effects
In this paper, we explore the feasibility of detecting gravitomagnetic effects generated by gravitational waves, by monitoring the relative orientation of the angular momentum vectors of test particles. We analyze the response of the relative angular momentum direction to all six polarization modes of gravitational waves and estimate the magnitude of its variation during gravitational wave events. Our findings indicate that when test particles possess magnetic moments, applying an external magnetic field of appropriate strength can induce resonant precession of the angular momentum direction under the influence of gravitational waves. This resonance may significantly amplify the gravitational wave signal, potentially enabling its detection with future gyroscope-based detectors. Such detectors would complement existing gravitational wave observatories that rely on gravitoelectric effects.
展开 ▾基于引力磁效应的引力波探测 · 本文探讨通过监测测试粒子角动量方向探测引力波产生的引力磁效应,并发现外加磁场可引发共振进动放大信号,有望用于未来陀螺仪探测器。
预印本 2025-12-12 · 刊出 2026-03-06 · 收录 2026-08-22