We introduce a pictorial approach to quantum information, called holographic software . Our software captures both algebraic and topological aspects of quantum networks. It yields a bi-directional dictionary to translate between a topological approach and an algebraic approach. Using our software, we give a topological simulation for quantum networks. The string Fourier transform (SFT) is our basic tool to transform product states into states with maximal entanglement entropy. We obtain a pictorial interpretation of Fourier transformation, of measurements, and of local transformations, including the n-qudit Pauli matrices and their representation by Jordan-Wigner transformations. We use our software to discover interesting new protocols for...
International audienceQuantum computing has emerged recently as a new computational paradigm. It con...
Quantum Information Science is a cross-disciplinary subject that has arisen in the last twenty years...
In this paper, we will discuss a formal link between neural networks and quantum computing. For that...
dissertationThe subject of this dissertation is the presentation of a surface code, the string-net s...
Quantum entangled networks represent essential tools for Quantum Communication, i.e. the exchange of...
This work is about diagrammatic languages, how they can be represented, and what they in turn can be...
In this work we present a general mathematical framework to deal with Quantum Networks, i.e. network...
We show that higher-dimensional versions of qubits, or qudits, can be encoded into spin systems and ...
Abstract The purpose of the project was to attempt an interpretation of the nature of digital quantu...
Computer networks have been one of the most revolutionary concepts and technologies of the last fift...
Abstract This study demonstrates entanglement can be exclusively constituted by quantum Fourier tran...
Quantum mechanics shows that if one is able to generate and manipulate entanglement over a distance,...
In this work we present a general mathematical framework to deal with Quantum Networks, i.e. network...
The work presented in this thesis is a contribution towards the understanding of holo- graphic entan...
Quantum Computing is an emerging field of research that leverages quantum mechanical properties to s...
International audienceQuantum computing has emerged recently as a new computational paradigm. It con...
Quantum Information Science is a cross-disciplinary subject that has arisen in the last twenty years...
In this paper, we will discuss a formal link between neural networks and quantum computing. For that...
dissertationThe subject of this dissertation is the presentation of a surface code, the string-net s...
Quantum entangled networks represent essential tools for Quantum Communication, i.e. the exchange of...
This work is about diagrammatic languages, how they can be represented, and what they in turn can be...
In this work we present a general mathematical framework to deal with Quantum Networks, i.e. network...
We show that higher-dimensional versions of qubits, or qudits, can be encoded into spin systems and ...
Abstract The purpose of the project was to attempt an interpretation of the nature of digital quantu...
Computer networks have been one of the most revolutionary concepts and technologies of the last fift...
Abstract This study demonstrates entanglement can be exclusively constituted by quantum Fourier tran...
Quantum mechanics shows that if one is able to generate and manipulate entanglement over a distance,...
In this work we present a general mathematical framework to deal with Quantum Networks, i.e. network...
The work presented in this thesis is a contribution towards the understanding of holo- graphic entan...
Quantum Computing is an emerging field of research that leverages quantum mechanical properties to s...
International audienceQuantum computing has emerged recently as a new computational paradigm. It con...
Quantum Information Science is a cross-disciplinary subject that has arisen in the last twenty years...
In this paper, we will discuss a formal link between neural networks and quantum computing. For that...