Quantum information science and intense laser matter interaction are two apparently unrelated fields. Here, we introduce the notion of quantum information theory to intense laser driven processes by providing the quantum mechanical description of measurement protocols for high harmonic generation in atoms. This allows to conceive new protocols for quantum state engineering of light. We explicitly evaluate conditioning experiments on individual optical field modes, and provide the corresponding quantum operation for coherent states. The associated positive operator-valued measures are obtained, and give rise to the quantum theory of measurement for the generation of high dimensional entangled states, and coherent state superposition with con...
Over the last few decades, quantised excitations of the electromagnetic field have proven to be an i...
Cavity quantum optomechanics has emerged as a new platform for quantum science and technology with a...
Efficient certification and quantification of high dimensional entanglement of composite systems are...
Recently, intensely driven laser-matter interactions have been used to connect the fields of strong ...
The physics of intense laser–matter interactions1,2 is described by treating the light pulses classi...
Linearity is a fundamental postulate of quantum mechanics which is occasionally the subject of debat...
The recent progress in the quantum optical formulation of the process of high harmonic generation ha...
Entanglement is one of the most peculiar features consequent upon quantum mechanics. It is at-tribut...
In the last few decades the emergence of a new field of research dealing with information at the qua...
We report the creation of a wide range of quantum states with controllable degrees of entanglement a...
We present a method for the generation and coherent manipulation of pulsed quantum frequency combs. ...
High harmonic generation (HHG) is an extreme nonlinear process where intense pulses of light drive m...
Better versions of separability conditions for four mode optical fields, i.e. two beams with two mod...
In this paper we will give a short presentation of the quantum Lévy-Khinchin formula and of the form...
The quantum theory of electromagnetic radiation predicts characteristic statistical fluctuations for...
Over the last few decades, quantised excitations of the electromagnetic field have proven to be an i...
Cavity quantum optomechanics has emerged as a new platform for quantum science and technology with a...
Efficient certification and quantification of high dimensional entanglement of composite systems are...
Recently, intensely driven laser-matter interactions have been used to connect the fields of strong ...
The physics of intense laser–matter interactions1,2 is described by treating the light pulses classi...
Linearity is a fundamental postulate of quantum mechanics which is occasionally the subject of debat...
The recent progress in the quantum optical formulation of the process of high harmonic generation ha...
Entanglement is one of the most peculiar features consequent upon quantum mechanics. It is at-tribut...
In the last few decades the emergence of a new field of research dealing with information at the qua...
We report the creation of a wide range of quantum states with controllable degrees of entanglement a...
We present a method for the generation and coherent manipulation of pulsed quantum frequency combs. ...
High harmonic generation (HHG) is an extreme nonlinear process where intense pulses of light drive m...
Better versions of separability conditions for four mode optical fields, i.e. two beams with two mod...
In this paper we will give a short presentation of the quantum Lévy-Khinchin formula and of the form...
The quantum theory of electromagnetic radiation predicts characteristic statistical fluctuations for...
Over the last few decades, quantised excitations of the electromagnetic field have proven to be an i...
Cavity quantum optomechanics has emerged as a new platform for quantum science and technology with a...
Efficient certification and quantification of high dimensional entanglement of composite systems are...