We present the manifestly covariant Lagrangian of a massless polarized particle that implies all dynamic and algebraic equations as the conditions of extreme of this variational problem. The model allows for minimal interaction with a gravitational field, leading to the equations, coinciding with Maxwell equations in the geometrical optics approximation. The model allows also a wide class of nonminimal interactions, which suggests an alternative way to study the electromagnetic radiation beyond the leading order of geometrical optics. As a specific example, we construct a curvature-dependent interaction in Schwarzschild spacetime, predicting the Faraday rotation of polarization plane, linearly dependent on the wave frequency. As a result, t...
Recently WMAP and BOOMERanG experiments have set stringent constraints on the polarization angle of ...
We review the geometrical-optics evolution of an electromagnetic wave propagating along a curved ray...
Polarization of light rotates in a gravitational field. The accrued phase is operationally meaningfu...
The propagation of electromagnetic waves in vacuum is often described within the geometrical optics ...
Probing the polarization of gravitational waves (GWs) would provide evidence of graviton, indicating...
The gravitational Faraday and its dual spin-Hall effects of light arise in space-times of non-zero a...
The propagation of high-frequency gravitational waves can be analyzed using the geometrical optics a...
From first principles of electromagnetism, a formalism analogous to that of classical optics is deve...
This book is devoted to researchers who would like to investigate interactions among gravitational w...
International audienceWe compute the gravitational birefringence of light as it undergoes gravitatio...
The spin Hall effects of light represent a diverse class of polarization-dependent physical phenomen...
We present a formalism to study the metric perturbations of the Schwarzschild spacetime. The formali...
The influence of spin on a photon's motion in a Schwarzschild and FRW spacetimes is studied. The fir...
We use Feynman perturbation techniques to analyze some aspects of electromagnetic wave generation a...
The photon vacuum polarization effect in curved spacetime leads to birefringence, i.e. the photon ve...
Recently WMAP and BOOMERanG experiments have set stringent constraints on the polarization angle of ...
We review the geometrical-optics evolution of an electromagnetic wave propagating along a curved ray...
Polarization of light rotates in a gravitational field. The accrued phase is operationally meaningfu...
The propagation of electromagnetic waves in vacuum is often described within the geometrical optics ...
Probing the polarization of gravitational waves (GWs) would provide evidence of graviton, indicating...
The gravitational Faraday and its dual spin-Hall effects of light arise in space-times of non-zero a...
The propagation of high-frequency gravitational waves can be analyzed using the geometrical optics a...
From first principles of electromagnetism, a formalism analogous to that of classical optics is deve...
This book is devoted to researchers who would like to investigate interactions among gravitational w...
International audienceWe compute the gravitational birefringence of light as it undergoes gravitatio...
The spin Hall effects of light represent a diverse class of polarization-dependent physical phenomen...
We present a formalism to study the metric perturbations of the Schwarzschild spacetime. The formali...
The influence of spin on a photon's motion in a Schwarzschild and FRW spacetimes is studied. The fir...
We use Feynman perturbation techniques to analyze some aspects of electromagnetic wave generation a...
The photon vacuum polarization effect in curved spacetime leads to birefringence, i.e. the photon ve...
Recently WMAP and BOOMERanG experiments have set stringent constraints on the polarization angle of ...
We review the geometrical-optics evolution of an electromagnetic wave propagating along a curved ray...
Polarization of light rotates in a gravitational field. The accrued phase is operationally meaningfu...