Proposal for a geophysical search for dilatonic waves
arXiv:0808.1602 · doi:10.1103/PhysRevD.78.042001
Abstract
We propose a new method of searching for the composition-dependent dilatonic waves, predicted by unified theories of strings. In this method, Earth's surface-gravity changes due to translational motions of its inner core, excited by dilatonic waves, are searched for by using superconducting gravimeters. This method has its best sensitivity at the frequency of 7 10 Hz, which is lower than the sensitive frequencies of previous proposals using gravitational-wave detectors: 10 to 1000 Hz. Using available results of surface-gravity measurements with superconducting gravimeters and assuming a simple Earth model, we present preliminary upper limits on the energy density of a stochastic background of massless dilatons at the low frequency. Though the results are currently limited by the uncertainty in the Earth model, this method has a potential of detecting dilatonic waves in a new window.
References in corpus (10)
- Tests of the Gravitational Inverse-Square Law below the Dark-Energy Length Scale
- Test of the Equivalence Principle Using a Rotating Torsion Balance
- Progress in Lunar Laser Ranging Tests of Relativistic Gravity
- New BBN limits on Physics Beyond the Standard Model from He4
- Particle Physics Implications of a Recent Test of the Gravitational Inverse Square Law
- A new cosmic microwave background constraint to primordial gravitational waves
- Improved constraints on non-Newtonian forces at 10 microns
- Probing the absolute density of the Earth's core using a vertical neutrino beam
- Response of the common mode of interferometric detectors to a stochastic background of massive scalar radiation
- Geophysical test of the universality of free-fall