The methods of reconstruction of the wave function of a pure state of a quantum system by quadrature distribution measured experimentally by the homodyne detection are considered. Such distribution is called optical tomogram of a state and containes one parameter θ. Wave function of a state is determined exactly by its optical tomogram if last one is known for all θ. But one can obtain optical tomogram from experiment of homodyne detection only for discrete number of θ. We introduce some approximate methods of reconstructing the state by such information about its optical tomogram
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
This review covers the latest developments in continuous-variable quantum-state tomography of optica...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
A homodyne-like detection scheme based on photon-number-resolving and low-intensity a local oscillat...
A homodyne-like detection scheme based on photon-number-resolving and low-intensity a local oscillat...
A homodyne-like detection scheme based on photon-number-resolving and low-intensity a local oscillat...
We suggest and demonstrate a tomographic method to characterise homodyne detectors at the quantum le...
The photon statistics and, moreover, the density matrix (quantum state) of a single light mode can b...
This thesis is concerned with the generation of non-classical quantum states of light, the photon-le...
We introduce a complete tomographic reconstruction scheme geared toward low photon-number states. To...
We address state reconstruction by photon-number-resolving detectors, and demonstrate that they may ...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
Quantum state tomography (QST) refers to any method that allows one to reconstruct the accurate repr...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
This review covers the latest developments in continuous-variable quantum-state tomography of optica...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
A homodyne-like detection scheme based on photon-number-resolving and low-intensity a local oscillat...
A homodyne-like detection scheme based on photon-number-resolving and low-intensity a local oscillat...
A homodyne-like detection scheme based on photon-number-resolving and low-intensity a local oscillat...
We suggest and demonstrate a tomographic method to characterise homodyne detectors at the quantum le...
The photon statistics and, moreover, the density matrix (quantum state) of a single light mode can b...
This thesis is concerned with the generation of non-classical quantum states of light, the photon-le...
We introduce a complete tomographic reconstruction scheme geared toward low photon-number states. To...
We address state reconstruction by photon-number-resolving detectors, and demonstrate that they may ...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
Quantum state tomography (QST) refers to any method that allows one to reconstruct the accurate repr...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...
This review covers the latest developments in continuous-variable quantum-state tomography of optica...
In a recent research (Olivares et al., 2019 [18]) we have demonstrated that a homodyne-like scheme, ...