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Infinite-dimensional quantum effects

Descrizione del progetto

Sistemi quantistici multidimensionali per computer quantistici

La sovrapposizione quantistica è al centro delle potenzialità entusiasmanti offerte dall’informatica quantistica. Nello stato di sovrapposizione, i qubit agiscono contemporaneamente come 1 e 0. A differenza dei qubit, i qudit possono assumere più dimensioni. L’aumento del numero di particelle e dimensioni intrecciate può creare computer quantistici più potenti. Il progetto InDiQE, finanziato dall’UE, sta lavorando allo sviluppo di strumenti matematici per studiare l’intreccio quantistico di qudit in dimensioni elevate. Le nuove tecniche aiuteranno i ricercatori a descrivere e quantificare matematicamente l’intreccio quantistico nei sistemi multipartiti. Lo studio di questi stati intrecciati multidimensionali di sistemi quantistici complessi può indicare un modo più pratico per costruire computer quantistici ad alta efficienza.

Obiettivo

The fundamental understanding of quantum correlations, as well as their characterization and quantification play a fundamental role for information processing and communication. The investigation of quantum correlations in high-dimensional, infinite dimensional or hybrid systems is of particular interest for the development of novel applications in quantum technologies. High-dimensional entangled states contain a large amount of entanglement, which represents a vital resource for applications in quantum information processing. The goal of this proposal is to find an optimal strategy to exploit this resource. Crucial open problems to be solved are the continuation of the development of mathematical methods and observable conditions for a convenient description of general qudit systems, and verifying as well as quantifying general quantum correlations in high-dimensional and multipartite systems. This project is placed at the border between quantum information theory and quantum optics, exploring the potential of high and infinite dimensional systems for quantum information tasks. Additionally, modern questions in quantum thermodynamics also relate to the control of infinite dimensional quantum systems and will benefit from the methods developed. Particularly, we adapt and further develop theoretical tools to harness and efficiently describe quantum correlations in complex systems. The specific objectives are to advance the understanding of practical systems and realistic scenarios for quantum information tasks and quantum
thermodynamics applications. Furthermore, the role that different kinds of quantum correlations have when complex systems are constituted of multiple degrees of freedom will be addressed. We are going to accomplish these goals by quantifying and classifying multimode non-classicality, investigating discrete- and continuous-variables hybrid systems and the discretization problem, addressing key challenges in the respective fields.

Meccanismo di finanziamento

MSCA-IF-EF-ST - Standard EF

Coordinatore

OESTERREICHISCHE AKADEMIE DER WISSENSCHAFTEN
Contribution nette de l'UE
€ 174 167,04
Indirizzo
DR. IGNAZ SEIPEL-PLATZ 2
1010 Wien
Austria

Mostra sulla mappa

Regione
Ostösterreich Wien Wien
Tipo di attività
Research Organisations
Collegamenti
Costo totale
€ 174 167,04