By using a complex field with a symmetric combination of electric and magnetic fields, a first-order covariant Lagrangian for Maxwell's equations is obtained, similar to the Lagrangian for the Dirac equation. This leads to a dual-symmetric quantum electrodynamic theory with an infinite set of local conservation laws. The dual symmetry is shown to correspond to a helical phase, conjugate to the conserved helicity. There is also a scaling symmetry, conjugate to the conserved entanglement. The results include a novel form of the photonic wavefunction, with a well-defined helicity number operator conjugate to the chiral phase, related to the fundamental dual symmetry. Interactions with charged particles can also be included. Transformations fro...
International audienceWe develop a dual description of quantum optics adapted to dielectric systems ...
In the wide realm of applications of quantum electrodynamics, a non-covariant formulation of theory ...
In the wide realm of applications of quantum electrodynamics, a non-covariant formulation of theory ...
By using a complex field with a symmetric combination of electric and magnetic fields, a first-order...
By using a complex field with a symmetric combination of electric and magnetic fields, a first-order...
The dual symmetry between electric and magnetic fields is an important intrinsic property of Maxwell...
International audienceThe photon wave equation proposed in terms of the Riemann–Silberstein vector i...
In the wide realm of applications of quantum electrodynamics, a non-covariant formulation of theory ...
This chapter presents a detailed introduction to a fundamental non-geometrical symmetry of electroma...
In this Letter, we show that the electromagnetic duality symmetry, broken in the microscopic Maxwell...
We consider the helicity and chirality of the free electromagnetic field, and advocate the former a...
We consider the helicity and chirality of the free electromagnetic field, and advocate the former as...
We construct a Lagrangian for general nonlinear electrodynamics that features electric and magnetic ...
Electric magnetic duality symmetry is well understood in vacuum. For light propagating through a med...
Electric magnetic duality symmetry is well understood in vacuum. For light propagating through a med...
International audienceWe develop a dual description of quantum optics adapted to dielectric systems ...
In the wide realm of applications of quantum electrodynamics, a non-covariant formulation of theory ...
In the wide realm of applications of quantum electrodynamics, a non-covariant formulation of theory ...
By using a complex field with a symmetric combination of electric and magnetic fields, a first-order...
By using a complex field with a symmetric combination of electric and magnetic fields, a first-order...
The dual symmetry between electric and magnetic fields is an important intrinsic property of Maxwell...
International audienceThe photon wave equation proposed in terms of the Riemann–Silberstein vector i...
In the wide realm of applications of quantum electrodynamics, a non-covariant formulation of theory ...
This chapter presents a detailed introduction to a fundamental non-geometrical symmetry of electroma...
In this Letter, we show that the electromagnetic duality symmetry, broken in the microscopic Maxwell...
We consider the helicity and chirality of the free electromagnetic field, and advocate the former a...
We consider the helicity and chirality of the free electromagnetic field, and advocate the former as...
We construct a Lagrangian for general nonlinear electrodynamics that features electric and magnetic ...
Electric magnetic duality symmetry is well understood in vacuum. For light propagating through a med...
Electric magnetic duality symmetry is well understood in vacuum. For light propagating through a med...
International audienceWe develop a dual description of quantum optics adapted to dielectric systems ...
In the wide realm of applications of quantum electrodynamics, a non-covariant formulation of theory ...
In the wide realm of applications of quantum electrodynamics, a non-covariant formulation of theory ...