Light reflection on a mirror can be thought as a simple physical effect. However if this happens when the mirror moves a rich scenario opens up. Here we aim at analyzing it from a quantum communication perspective. In particular, we study the kind of quantum channel that arises from (Gaussian) light reflection upon an accelerating mirror. Two competing mechanisms emerge in such a context, namely photons production by the mirror’s motion and interference between modes. As consequence we find out a quantum amplifier channel and quantum lossy channel respectively below and above a threshold frequency (that depends on parameters determining mirror’s acceleration). Exactly at the threshold frequency the channel behaves like a purely classical ad...
A multimode quantum analysis of noise reduction in interferometric measurements is presented. A unit...
As with classical information, error-correcting codes enable reliable transmission of quantum inform...
The puzzles of quantum mechanics are: 1. what is the medium for the photon and for the electron wave...
Light reflection on a mirror can be thought as a simple physical effect. However if this happens whe...
Motivated by the fact that the null shell of a collapsing black hole can be described by a perfectly...
The derivation of a quantum Markovian model for an optomechanical system consisting of a quantum mec...
Quantum electrodynamics furnishes a new type of representation for the characterisation of nonlinear...
We experimentally investigate the mode characteristics of multimode radiation fields propagating thr...
We study the transfer of quantum correlations between two movable mirrors of two Fabry-Pérot cavitie...
Radiation from movingmirrors, a pure quantum effect, is well understood for mirrors that advance or ...
30 pages, 9 postscript figuresWe study the correlations between the particles emitted by a moving mi...
High-dimensional entanglement with spatial modes of light promises increased security and informatio...
We consider the problem of quantum scattering of a localized wave packet by a weak Gaussian potentia...
We investigate the capacity of bosonic quantum channels for the transmission of quantum information....
This paper models light scattering through flat surfaces with finite transmission, reflection, and a...
A multimode quantum analysis of noise reduction in interferometric measurements is presented. A unit...
As with classical information, error-correcting codes enable reliable transmission of quantum inform...
The puzzles of quantum mechanics are: 1. what is the medium for the photon and for the electron wave...
Light reflection on a mirror can be thought as a simple physical effect. However if this happens whe...
Motivated by the fact that the null shell of a collapsing black hole can be described by a perfectly...
The derivation of a quantum Markovian model for an optomechanical system consisting of a quantum mec...
Quantum electrodynamics furnishes a new type of representation for the characterisation of nonlinear...
We experimentally investigate the mode characteristics of multimode radiation fields propagating thr...
We study the transfer of quantum correlations between two movable mirrors of two Fabry-Pérot cavitie...
Radiation from movingmirrors, a pure quantum effect, is well understood for mirrors that advance or ...
30 pages, 9 postscript figuresWe study the correlations between the particles emitted by a moving mi...
High-dimensional entanglement with spatial modes of light promises increased security and informatio...
We consider the problem of quantum scattering of a localized wave packet by a weak Gaussian potentia...
We investigate the capacity of bosonic quantum channels for the transmission of quantum information....
This paper models light scattering through flat surfaces with finite transmission, reflection, and a...
A multimode quantum analysis of noise reduction in interferometric measurements is presented. A unit...
As with classical information, error-correcting codes enable reliable transmission of quantum inform...
The puzzles of quantum mechanics are: 1. what is the medium for the photon and for the electron wave...