We demonstrate experimental excitation-manifold-resolved polarization characterization of quantum states of light ranging from the few-photon to the many-photon level. In contrast to the traditional characterization of polarization that is based on the Stokes parameters, we experimentally determine the Stokes vector of each excitation manifold separately. Only for states with a given photon number do the methods coincide. For states with an indeterminate photon number, for example Gaussian states, the employed method gives a richer and more accurate description. We apply the method both in theory and in experiment to some common states to demonstrate its advantages
The degree of polarization of a quantum state can be defined as its Hilbert-Schmidt distance to the ...
Quantum state tomography (QST), the process through which the density matrix of a quantum system is ...
We present a complete polarization characterization of any quantum state of two orthogonal polarizat...
We examine whether the Stokes parameters of a two-mode electromagnetic field results from the superp...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
Quantum optics entails polarization properties that cannot be fully described by the classical Stoke...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We study the polarization properties of three-dimensional quantum light fields by using the Stokes o...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
It is shown that the description of polarization based on quantization of classical Stokes parameter...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
We discuss different proposals for the degree of polarization of quantum fields. The simplest approa...
The degree of polarization of a quantum state can be defined as its Hilbert-Schmidt distance to the ...
Quantum state tomography (QST), the process through which the density matrix of a quantum system is ...
We present a complete polarization characterization of any quantum state of two orthogonal polarizat...
We examine whether the Stokes parameters of a two-mode electromagnetic field results from the superp...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
Quantum optics entails polarization properties that cannot be fully described by the classical Stoke...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We study the polarization properties of three-dimensional quantum light fields by using the Stokes o...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
We propose an operational degree of polarization in terms of the variance of the Stokes vector minim...
It is shown that the description of polarization based on quantization of classical Stokes parameter...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
We discuss different proposals for the degree of polarization of quantum fields. The simplest approa...
The degree of polarization of a quantum state can be defined as its Hilbert-Schmidt distance to the ...
Quantum state tomography (QST), the process through which the density matrix of a quantum system is ...
We present a complete polarization characterization of any quantum state of two orthogonal polarizat...