Quantum electro dynamics (QED) comprises virtual particle production and thus gives rise to a refractive index of the vacuum larger than unity in the presence of a magnetic field. This predicted effect has not been measured to date, even after considerable effort of a number of experiments. It has been proposed by other authors to possibly use gravitational wave detectors for such vacuum QED measurements, and we give this proposal some new consideration in this paper. In particular we look at possible source field magnet designs and further constraints on the implementation at a gravitational wave detector. We conclude that such an experiment seems to be feasible with permanent magnets, yet still challenging in its implementation
A fundamental quantum electrodynamics prediction which has so far not yet been confirmed experimenta...
The PVLAS collaboration is presently assembling a new apparatus (at the INFN section of Ferrara, Ita...
International audienceNonlinear electrodynamics in vacuum remains a relatively unexplored topic, as ...
Quantum electrodynamics (QED) comprises virtual particle production and thus gives rise to a refract...
Quantum electro dynamics (QED) comprises virtual particle production and thus gives rise to a refrac...
Classical electrodynamics in a vacuum is a linear theory and does not foresee photon-photon scatteri...
We propose a novel technique that promises hope of being the first to directly detect a polarization...
We propose an experimental set-up to observe and measure the interaction between high energy photons...
Several groups are carrying out experiments to observe and measure vacuum magnetic birefringence, pr...
We describe the principle and the status of the PVLAS experiment which is presently running at the I...
Einstein's general theory of relativity predicts that accelerating mass distributions produce gravit...
A fundamental quantum electrodynamics prediction which has so far not yet been confirmed experimenta...
The experiment PVLAS studies the optical properties of the vacuum, that behaves much like a material...
We describe the principle and the status of the PVLAS experiment which is presently running at the I...
We present a new perspective on the link between quantum electrodynamics (QED) and Maxwell’s equatio...
A fundamental quantum electrodynamics prediction which has so far not yet been confirmed experimenta...
The PVLAS collaboration is presently assembling a new apparatus (at the INFN section of Ferrara, Ita...
International audienceNonlinear electrodynamics in vacuum remains a relatively unexplored topic, as ...
Quantum electrodynamics (QED) comprises virtual particle production and thus gives rise to a refract...
Quantum electro dynamics (QED) comprises virtual particle production and thus gives rise to a refrac...
Classical electrodynamics in a vacuum is a linear theory and does not foresee photon-photon scatteri...
We propose a novel technique that promises hope of being the first to directly detect a polarization...
We propose an experimental set-up to observe and measure the interaction between high energy photons...
Several groups are carrying out experiments to observe and measure vacuum magnetic birefringence, pr...
We describe the principle and the status of the PVLAS experiment which is presently running at the I...
Einstein's general theory of relativity predicts that accelerating mass distributions produce gravit...
A fundamental quantum electrodynamics prediction which has so far not yet been confirmed experimenta...
The experiment PVLAS studies the optical properties of the vacuum, that behaves much like a material...
We describe the principle and the status of the PVLAS experiment which is presently running at the I...
We present a new perspective on the link between quantum electrodynamics (QED) and Maxwell’s equatio...
A fundamental quantum electrodynamics prediction which has so far not yet been confirmed experimenta...
The PVLAS collaboration is presently assembling a new apparatus (at the INFN section of Ferrara, Ita...
International audienceNonlinear electrodynamics in vacuum remains a relatively unexplored topic, as ...