The physics that governs quantum monitoring may involve other degrees of freedom than the ones initialised and controlled for probing. In this context we address the simultaneous estimation of phase and dephasing characterizing a dispersive medium, and we explore the role of frequency correlations within a photon pair generated via parametric down-conversion, when used as a probe for the medium. We derive the ultimate quantum limits on the estimation of the two parameters, by calculating the corresponding quantum Cram\ue9r-Rao bound; we then consider a feasible estimation scheme, based on the measurement of Stokes operators, and address its absolute performances in terms of the correlation parameters, and, more fundamentally, of the role pl...
In this thesis we explore aspects of dynamics of open quantum systems related to coherence and quant...
Photon correlation properties are now harnessed in various experiments and applications (photon corr...
Single photons are a natural platform for quantum technologies as they support entanglement in many ...
The physics that governs quantum monitoring may involve other degrees of freedom than the ones initi...
Developing techniques for characterizing quantum mechanical systems has been a major topic of resear...
Photon correlations are a cornerstone of quantum optics. Recent works [E. del Valle, New J. Phys. 15...
Phase estimation, at the heart of many quantum metrology and communication schemes, can be strongly ...
We demonstrate experimentally a new technique to control the bandwidth and the type of frequency cor...
The exact role of entanglement in various quantum metrology schemes is still subject to debates. Thi...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
A theory of correlations between N photons of given frequencies and detected at given time delays is...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Correlated photons inspire abundance of metrology-related platforms, which benefit from quantum (ant...
Careful tailoring the quantum state of probes offers the capability of investigating matter at unpre...
In this thesis we explore aspects of dynamics of open quantum systems related to coherence and quant...
Photon correlation properties are now harnessed in various experiments and applications (photon corr...
Single photons are a natural platform for quantum technologies as they support entanglement in many ...
The physics that governs quantum monitoring may involve other degrees of freedom than the ones initi...
Developing techniques for characterizing quantum mechanical systems has been a major topic of resear...
Photon correlations are a cornerstone of quantum optics. Recent works [E. del Valle, New J. Phys. 15...
Phase estimation, at the heart of many quantum metrology and communication schemes, can be strongly ...
We demonstrate experimentally a new technique to control the bandwidth and the type of frequency cor...
The exact role of entanglement in various quantum metrology schemes is still subject to debates. Thi...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
A theory of correlations between N photons of given frequencies and detected at given time delays is...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
Correlated photons inspire abundance of metrology-related platforms, which benefit from quantum (ant...
Careful tailoring the quantum state of probes offers the capability of investigating matter at unpre...
In this thesis we explore aspects of dynamics of open quantum systems related to coherence and quant...
Photon correlation properties are now harnessed in various experiments and applications (photon corr...
Single photons are a natural platform for quantum technologies as they support entanglement in many ...