Narrowing down sources of high-frequency gravitational waves
Detecting gravitational waves above 100 kHz would constitute a major discovery, as any observable signal would have to arise from new physics within the late universe. Although many technologies have been identified to explore this high-frequency regime, the known landscape of promising sources remains extremely sparse. In this work, we aim to rectify this issue by providing model-independent arguments that highlight the most interesting parts of theory space, while remaining agnostic of the specific signal mechanism. For example, energy-conservation implies that gravitational waves detectable by future experiments well above a MHz would most likely have to originate from within the Solar System. Based on these arguments, we also constrain the physical properties of such sources.
展开 ▾缩小高频引力波源的范围 · 本文通过模型无关的论证,指出未来实验可探测的兆赫以上引力波最可能源自太阳系内,并据此约束了此类源的物理性质。
预印本 2026-01-15 · 刊出 2026-08-07 · 收录 2026-08-20