Evolutions of quantum noise, characterized by quadrature squeezing parameter and Fano factor, and of mixedness, quantified by quantum von Neumann and linear entropies, of a pumped dissipative non-linear oscillator are studied. The model can describe a signal mode interacting with a thermal reservoir in a parametrically pumped cavity with a Kerr non-linearity. It is discussed that the initial pure states, including coherent states, Fock states, and finite superpositions of coherent states evolve into the same steady mixed state as verified by the quantum relative entropy and the Bures metric. It is shown analytically and verified numerically that the steady state can be well approximated by a nonclassical Gaussian state exhibiting quadrature...
We investigate quantum effects in pattern formation for a degenerate optical parametric oscillator w...
Restricted Access.We study a generic open quantum system where the coupling between the system and i...
International audienceThe dynamical behavior of Kerr optical frequency combs is very well understood...
In this thesis we study the quantum statistical properties of noise in several quantum optical syste...
The focus of the study is the free quantum evolution of Duffing oscillators which are nonlinearly co...
In this paper, employing the stochastic differential equations associated with the normal ordering, ...
We investigate non-classical properties of states generated via quantum excitation on the squeezed c...
Our normal understanding of the dissipative relaxation of a quantum system interacting with a reserv...
13 págs.; 5 figs,; PACS number(s): 42.50.Dv, 42.50.KbThe theory of a two-mode nondegenerate parametr...
We develop a systematic theory of quantum fluctuations in the driven optical parametric oscillator, ...
The quantum and statistical properties of light generated by an external classical field in a correl...
We present a quantum theory of the nondegenerate parametric oscillator above threshold. The effect o...
We present a quantum analysis of four-wave mixing in a non-resonant nonlinear medium inside a cavity...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We discuss phase-locking phenomenon at low-level of quanta and quantum statistics for parametrically...
We investigate quantum effects in pattern formation for a degenerate optical parametric oscillator w...
Restricted Access.We study a generic open quantum system where the coupling between the system and i...
International audienceThe dynamical behavior of Kerr optical frequency combs is very well understood...
In this thesis we study the quantum statistical properties of noise in several quantum optical syste...
The focus of the study is the free quantum evolution of Duffing oscillators which are nonlinearly co...
In this paper, employing the stochastic differential equations associated with the normal ordering, ...
We investigate non-classical properties of states generated via quantum excitation on the squeezed c...
Our normal understanding of the dissipative relaxation of a quantum system interacting with a reserv...
13 págs.; 5 figs,; PACS number(s): 42.50.Dv, 42.50.KbThe theory of a two-mode nondegenerate parametr...
We develop a systematic theory of quantum fluctuations in the driven optical parametric oscillator, ...
The quantum and statistical properties of light generated by an external classical field in a correl...
We present a quantum theory of the nondegenerate parametric oscillator above threshold. The effect o...
We present a quantum analysis of four-wave mixing in a non-resonant nonlinear medium inside a cavity...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We discuss phase-locking phenomenon at low-level of quanta and quantum statistics for parametrically...
We investigate quantum effects in pattern formation for a degenerate optical parametric oscillator w...
Restricted Access.We study a generic open quantum system where the coupling between the system and i...
International audienceThe dynamical behavior of Kerr optical frequency combs is very well understood...