The purpose of this paper is to extend linear systems and signals theory to include single photon quantum signals. We provide detailed results describing how quantum linear systems respond to multichannel single photon quantum signals. In particular, we characterize the class of states (which we call photon-Gaussian states) that result when multichannel photons are input to a quantum linear system. We show that this class of quantum states is preserved by quantum linear systems. Multichannel photon-Gaussian states are defined via the action of certain creation and annihilation operators on Gaussian states. Our results show how the output states are determined from the input states through a pair of transfer function relations. We also provi...
We develop a linear optics network for the generation of photonic entangled states via designing a q...
We discuss the concept of a single-photon state together with how they are generated, measured and i...
International audienceIn this paper, we derive the stochastic master equations for quantum systems d...
The purpose of this tutorial is to give a brief introduction to linear quantum control systems. The ...
We determine quantum master and filter equations for continuous measurement of systems coupled to in...
We introduce the quantum stochastic differential equation (QSDE) approach to exactly analyze the res...
We study the evolution of the quantum state of n photons in m different modes when they go through a...
The aim of this paper is to determine quantum master and filter equations for systems coupled to con...
The purpose of this paper is to determine quantum master and filter equations for systems coupled to...
We give an alternative derivation for the explicit formula of the effective Hamiltonian describing t...
Single-photon states, which carry quantum information and coherently interact with quantum systems, ...
Abstract — The aim of this paper is to determine quantum master and filter equations for systems cou...
We give explicit constructions of quantum dynamical filters which generate nonclassical states (cohe...
We analyze in details a scheme for cloning of Gaussian states based on linear optical components and...
We consider the system of N two-level atoms, of which N0 atoms are unexcited and N1 are excited. Thi...
We develop a linear optics network for the generation of photonic entangled states via designing a q...
We discuss the concept of a single-photon state together with how they are generated, measured and i...
International audienceIn this paper, we derive the stochastic master equations for quantum systems d...
The purpose of this tutorial is to give a brief introduction to linear quantum control systems. The ...
We determine quantum master and filter equations for continuous measurement of systems coupled to in...
We introduce the quantum stochastic differential equation (QSDE) approach to exactly analyze the res...
We study the evolution of the quantum state of n photons in m different modes when they go through a...
The aim of this paper is to determine quantum master and filter equations for systems coupled to con...
The purpose of this paper is to determine quantum master and filter equations for systems coupled to...
We give an alternative derivation for the explicit formula of the effective Hamiltonian describing t...
Single-photon states, which carry quantum information and coherently interact with quantum systems, ...
Abstract — The aim of this paper is to determine quantum master and filter equations for systems cou...
We give explicit constructions of quantum dynamical filters which generate nonclassical states (cohe...
We analyze in details a scheme for cloning of Gaussian states based on linear optical components and...
We consider the system of N two-level atoms, of which N0 atoms are unexcited and N1 are excited. Thi...
We develop a linear optics network for the generation of photonic entangled states via designing a q...
We discuss the concept of a single-photon state together with how they are generated, measured and i...
International audienceIn this paper, we derive the stochastic master equations for quantum systems d...