Communicating Quantum Processes (CQP) is a quantum process calculus that applies formal techniques from classical computer science to concurrent and communicating systems that combine quantum and classical computation. By employing the theory of behavioural equivalence between processes, it is possible to verify the correctness of a system in CQP. The equational theory of CQP helps us to analyse quantum systems by reducing the need to explicitly construct bisimulation relations. We add three new equational axioms to the existing equational theory of CQP, which helps us to analyse various quantum protocols by proving that the implementation and specification are equivalent. We summarise the necessary theory and demonstrate its application in...
The novel field of quantum computation and quantum information has gathered significant momentum in ...
We explain the use of quantum process calculus to describe and analyse linear optical quantum compu...
AbstractWe present a process algebra for specifying and reasoning about quantum security protocols. ...
Communicating Quantum Processes (CQP) is a quantum process calculus that applies formal techniques f...
Formal methods is an area in theoretical computer science that provides the theories and tools for d...
We define a language CQP (Communicating Quantum Processes) for modelling systems which combine quant...
We describe the use of quantum process calculus to describe and analyze quantum communication protoc...
We describe the use of quantum process calculus to describe and analyze quantum communication protoc...
Quantum processes describe concurrent communicating systems that may involve quantum information. We...
Quantum cryptographic systems have been commercially available, with a striking advantage over class...
Quantum communication is a rapidly growing area of research and development. Quantum cryptography ha...
We define a language CQP (Communicating Quantum Processes) for modelling systems which combine quant...
Quantum cryptographic systems have been commercially available, with a striking advantage over class...
Quantum communication and cryptographic protocols are well on the way to becoming an important pract...
Abstract. We establish an axiomatization for quantum processes, which is a quantum generalization of...
The novel field of quantum computation and quantum information has gathered significant momentum in ...
We explain the use of quantum process calculus to describe and analyse linear optical quantum compu...
AbstractWe present a process algebra for specifying and reasoning about quantum security protocols. ...
Communicating Quantum Processes (CQP) is a quantum process calculus that applies formal techniques f...
Formal methods is an area in theoretical computer science that provides the theories and tools for d...
We define a language CQP (Communicating Quantum Processes) for modelling systems which combine quant...
We describe the use of quantum process calculus to describe and analyze quantum communication protoc...
We describe the use of quantum process calculus to describe and analyze quantum communication protoc...
Quantum processes describe concurrent communicating systems that may involve quantum information. We...
Quantum cryptographic systems have been commercially available, with a striking advantage over class...
Quantum communication is a rapidly growing area of research and development. Quantum cryptography ha...
We define a language CQP (Communicating Quantum Processes) for modelling systems which combine quant...
Quantum cryptographic systems have been commercially available, with a striking advantage over class...
Quantum communication and cryptographic protocols are well on the way to becoming an important pract...
Abstract. We establish an axiomatization for quantum processes, which is a quantum generalization of...
The novel field of quantum computation and quantum information has gathered significant momentum in ...
We explain the use of quantum process calculus to describe and analyse linear optical quantum compu...
AbstractWe present a process algebra for specifying and reasoning about quantum security protocols. ...