The characterization of the polarization properties of a quantum state requires the knowledge of the joint probability distribution of the Stokes variables. This amounts to assessing all the moments of these variables, which are aptly encoded in a multipole expansion of the density matrix. The cumulative distribution of these multipoles encapsulates in a handy manner the polarization content of the state. We work out the extremal states for that distribution, finding that SU(2) coherent states are maximal to any order, so they are the most polarized allowed by quantum theory. The converse case of pure states minimizing that distribution, which can be seen as the most quantum ones, is investigated for a diverse range of number of photons. ...
We advocate a simple multipole expansion of the polarization density matrix. The resulting multipole...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We present a moment expansion for the systematic characterization of the polarization properties of ...
The characterization of the polarization properties of a quantum state requires the knowledge of the...
The characterization of the polarization properties of a quantum state requires the knowledge of the...
The characterization of quantum polarization of light requires knowledge of all the moments of the S...
The characterization of quantum polarization of light requires knowledge of all the moments of the S...
The characterization of quantum polarization of light requires knowledge of all the moments of the S...
We advocate a simple multipole expansion of the polarization density matrix. The resulting multipole...
The degree of polarization of a quantum state can be defined as its Hilbert-Schmidt distance to the ...
Quantum optics entails polarization properties that cannot be fully described by the classical Stoke...
We derive quantum polarization distributions on the Poincare sphere for two-mode fields as suitable ...
The degree of polarization of a quantum field can be defined as its distance to an appropriate set o...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We advocate a simple multipole expansion of the polarization density matrix. The resulting multipole...
We advocate a simple multipole expansion of the polarization density matrix. The resulting multipole...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We present a moment expansion for the systematic characterization of the polarization properties of ...
The characterization of the polarization properties of a quantum state requires the knowledge of the...
The characterization of the polarization properties of a quantum state requires the knowledge of the...
The characterization of quantum polarization of light requires knowledge of all the moments of the S...
The characterization of quantum polarization of light requires knowledge of all the moments of the S...
The characterization of quantum polarization of light requires knowledge of all the moments of the S...
We advocate a simple multipole expansion of the polarization density matrix. The resulting multipole...
The degree of polarization of a quantum state can be defined as its Hilbert-Schmidt distance to the ...
Quantum optics entails polarization properties that cannot be fully described by the classical Stoke...
We derive quantum polarization distributions on the Poincare sphere for two-mode fields as suitable ...
The degree of polarization of a quantum field can be defined as its distance to an appropriate set o...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We advocate a simple multipole expansion of the polarization density matrix. The resulting multipole...
We advocate a simple multipole expansion of the polarization density matrix. The resulting multipole...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We present a moment expansion for the systematic characterization of the polarization properties of ...