We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algorithm or process on a classical computer. The resulting theorem is an extension of the Gottesman-Knill theorem to continuous variable quantum information. For a collection of harmonic oscillators, any quantum process that begins with unentangled Gaussian states, performs only transformations generated by Hamiltonians that are quadratic in the canonical operators, and involves only measurements of canonical operators (including finite losses) and suitable operations conditioned on these measurements can be simulated efficiently on a classical computer.4 page(s
We identify a broad class of physical processes in an optical quantum circuit that can be efficientl...
International audienceIt is reasonable to assume that quantum computations take place under the cont...
Continuous-time stochastic processes pervade everyday experience, and the simulation of models of th...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
This thesis addresses ideas and problems in continuous-variable quan- turn computation and informati...
State of the art and motivations A major barrier to our understanding of quantum many-body systems i...
We identify a broad class of physical processes in an optical quantum circuit that can be efficientl...
The idea to assimilate classical information theory with quantum mechanics resulted in the creation ...
The simulation of quantum physical systems is expected to be an important application for quantum co...
Quantum information processing is appealing due its ability to solve certain problems quantitatively...
This thesis deals with the study of quantum communication protocols with Continuous Variable (CV) sy...
Clifford gates are a winsome class of quantum operations combining mathematical elegance with physic...
© 2022 American Physical Society.We develop a framework for simulating measure-preserving, ergodic d...
We establish the potential of continuous-variable Gaussian states of linear dynamical systems for ma...
We identify a broad class of physical processes in an optical quantum circuit that can be efficientl...
International audienceIt is reasonable to assume that quantum computations take place under the cont...
Continuous-time stochastic processes pervade everyday experience, and the simulation of models of th...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
This thesis addresses ideas and problems in continuous-variable quan- turn computation and informati...
State of the art and motivations A major barrier to our understanding of quantum many-body systems i...
We identify a broad class of physical processes in an optical quantum circuit that can be efficientl...
The idea to assimilate classical information theory with quantum mechanics resulted in the creation ...
The simulation of quantum physical systems is expected to be an important application for quantum co...
Quantum information processing is appealing due its ability to solve certain problems quantitatively...
This thesis deals with the study of quantum communication protocols with Continuous Variable (CV) sy...
Clifford gates are a winsome class of quantum operations combining mathematical elegance with physic...
© 2022 American Physical Society.We develop a framework for simulating measure-preserving, ergodic d...
We establish the potential of continuous-variable Gaussian states of linear dynamical systems for ma...
We identify a broad class of physical processes in an optical quantum circuit that can be efficientl...
International audienceIt is reasonable to assume that quantum computations take place under the cont...
Continuous-time stochastic processes pervade everyday experience, and the simulation of models of th...