A comparison between matter wave and light wave interferometers for the detection of gravitational waves
arXiv:gr-qc/0609075 · doi:10.1016/J.PHYSLETA.2006.04.103
Abstract
We calculate and compare the response of light wave interferometers and matter wave interferometers to gravitational waves. We find that metric matter wave interferometers will not challenge kilometric light wave interferometers such as Virgo or LIGO, but could be a good candidate for the detection of very low frequency gravitational waves.
References in corpus (5)
- Upper Limits on a Stochastic Background of Gravitational Waves
- Bloch oscillations of ultracold atoms: a tool for a metrological determination of
- Upper limits from the LIGO and TAMA detectors on the rate of gravitational-wave bursts
- Gravitational wave detectors based on matter wave interferometers (MIGO) are no better than laser interferometers (LIGO)
- Sensitivity of a small matter-wave interferometer to gravitational waves
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