With the purpose of introducing a useful tool for researches concerning foundations of quantum mechanics and applications to quantum technologies, here we address three quantumness quantifiers for bipartite optical systems: one is based on sub-shot-noise correlations, one is related to antibunching and one springs from entanglement determination. The specific cases of parametric downconversion seeded by thermal, coherent and squeezed states are discussed in detail
We present a method to test quantum behavior of quantum information processing devices, such as quan...
Abstract: We investigate the notion of quantumness based on the noncommutativity of the algebra of o...
In the context of bipartite bosonic systems, two notions of classicality of correlations can be defi...
We address the pair of conjugated field modes obtained from parametric down-conversion as a convenie...
In the first part of this dissertation a framework for categorizing entropic measures of nonclassica...
A new operator based condition for distinguishing classical from non-classical states of quantised r...
In the last few decades the emergence of a new field of research dealing with information at the qua...
This thesis concerns the generation of quantum states and the characterization of their nonclassical...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
We study the properties of bisqueezed tripartite Gaussian states created by two spontaneous parametr...
This work concerns the generation of optical entangled states by means of parametric down-conversion...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
The extent to which the intense light generated by an unseeded, high-gain optical parametric amplifi...
The optimal discrimination of nonorthogonal quantum states with minimum error probability is a funda...
We introduce a three-parameter family of single-mode optical states whose density operator is a weig...
We present a method to test quantum behavior of quantum information processing devices, such as quan...
Abstract: We investigate the notion of quantumness based on the noncommutativity of the algebra of o...
In the context of bipartite bosonic systems, two notions of classicality of correlations can be defi...
We address the pair of conjugated field modes obtained from parametric down-conversion as a convenie...
In the first part of this dissertation a framework for categorizing entropic measures of nonclassica...
A new operator based condition for distinguishing classical from non-classical states of quantised r...
In the last few decades the emergence of a new field of research dealing with information at the qua...
This thesis concerns the generation of quantum states and the characterization of their nonclassical...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
We study the properties of bisqueezed tripartite Gaussian states created by two spontaneous parametr...
This work concerns the generation of optical entangled states by means of parametric down-conversion...
A new operator-based condition for distinguishing classical from nonclassical states of quantized ra...
The extent to which the intense light generated by an unseeded, high-gain optical parametric amplifi...
The optimal discrimination of nonorthogonal quantum states with minimum error probability is a funda...
We introduce a three-parameter family of single-mode optical states whose density operator is a weig...
We present a method to test quantum behavior of quantum information processing devices, such as quan...
Abstract: We investigate the notion of quantumness based on the noncommutativity of the algebra of o...
In the context of bipartite bosonic systems, two notions of classicality of correlations can be defi...