We study the prospects for using interferometers in gravitational-wave detectors as tools to search for photon-sector violations of Lorentz symmetry. Existing interferometers are shown to be exquisitely sensitive to tiny changes in the effective refractive index of light occurring at frequencies around and below the microhertz range, including at the harmonics of the frequencies of the Earth's sidereal rotation and annual revolution relevant for tests of Lorentz symmetry. We use preliminary data obtained by the Laser Interferometer Gravitational-Wave Observatory (LIGO) in 2006–2007 to place constraints on coefficients for Lorentz violation in the photon sector exceeding current limits by about four orders of magnitude
An investigation is performed of the Lorentz-violating electrodynamics extracted from the renormaliz...
Lorentz symmetry is a foundational property of modern physics, underlying the standard model of part...
Atom interferometers (AIs) on earth and in space offer good capabilities for measuring gravitational...
AbstractWe study the prospects for using interferometers in gravitational-wave detectors as tools to...
Lorentz symmetry is one of the pillars of both General Relativity and the Standard Model of particle...
In the last decade, a variety of high-precision experiments have searched for miniscule violations o...
International audienceIn this work, we review the effective field theory framework to search for Lor...
Most of the techniques being developed for detection of gravitational radiation involve sensing the ...
Since the pioneering work of Joseph Weber more than a decade ago there has been a continuing effort ...
Significant progress has been made in recent years on the development of gravitational wave detector...
Significant progress has been made in recent years on the development of gravitational-wave detector...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...
Precision tests of Lorentz symmetry have become increasingly of interest to the broader gravitationa...
Limits on gravitational Čerenkov radiation by cosmic rays are obtained and used to constrain coeffic...
An investigation is performed of the Lorentz-violating electrodynamics extracted from the renormaliz...
Lorentz symmetry is a foundational property of modern physics, underlying the standard model of part...
Atom interferometers (AIs) on earth and in space offer good capabilities for measuring gravitational...
AbstractWe study the prospects for using interferometers in gravitational-wave detectors as tools to...
Lorentz symmetry is one of the pillars of both General Relativity and the Standard Model of particle...
In the last decade, a variety of high-precision experiments have searched for miniscule violations o...
International audienceIn this work, we review the effective field theory framework to search for Lor...
Most of the techniques being developed for detection of gravitational radiation involve sensing the ...
Since the pioneering work of Joseph Weber more than a decade ago there has been a continuing effort ...
Significant progress has been made in recent years on the development of gravitational wave detector...
Significant progress has been made in recent years on the development of gravitational-wave detector...
Nearly a century after Einstein first predicted the existence of gravitational waves, a global netwo...
Precision tests of Lorentz symmetry have become increasingly of interest to the broader gravitationa...
Limits on gravitational Čerenkov radiation by cosmic rays are obtained and used to constrain coeffic...
An investigation is performed of the Lorentz-violating electrodynamics extracted from the renormaliz...
Lorentz symmetry is a foundational property of modern physics, underlying the standard model of part...
Atom interferometers (AIs) on earth and in space offer good capabilities for measuring gravitational...