Just as conventional functional programs may be understood as proofs in an intuitionistic logic, so quantum processes can also be viewed as proofs in a suitable logic. We describe such a logic, the logic of compact closed categories and biproducts, presented both as a sequent calculus and as a system of proof-nets. This logic captures much of the necessary structure needed to represent quantum processes under classical control, while remaining agnostic to the fine details. We demonstrate how to represent quantum processes as proof-nets, and show that the dynamic behaviour of a quantum process is captured by the cut-elimination procedure for the logic. We show that the cut elimination procedure is strongly normalising: that is, that every le...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
Just as conventional functional programs may be understood as proofs in an intuitionistic logic, so ...
We define a strongly normalising proof-net calculus corresponding to the logic of strongly compact c...
We define a strongly normalising proof-net calculus corresponding to the logic of strongly compact c...
Compact closed categories provide a foundational formalism for a variety of important domains, inclu...
Compact closed categories provide a foundational formalism for a variety of important domains, inclu...
Dagger-compact categories have been proposed as a categorical framework suitable for quantum reasoni...
Abstract. We establish an axiomatization for quantum processes, which is a quantum generalization of...
International audienceWe build on the series of work by Dal Lago and coauthors and identify proof ne...
A fundamental component of theoretical computer science is the application of logic. Logic provides ...
We study quantum information and computation from a novel point of view. Our approach is based on re...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
Just as conventional functional programs may be understood as proofs in an intuitionistic logic, so ...
We define a strongly normalising proof-net calculus corresponding to the logic of strongly compact c...
We define a strongly normalising proof-net calculus corresponding to the logic of strongly compact c...
Compact closed categories provide a foundational formalism for a variety of important domains, inclu...
Compact closed categories provide a foundational formalism for a variety of important domains, inclu...
Dagger-compact categories have been proposed as a categorical framework suitable for quantum reasoni...
Abstract. We establish an axiomatization for quantum processes, which is a quantum generalization of...
International audienceWe build on the series of work by Dal Lago and coauthors and identify proof ne...
A fundamental component of theoretical computer science is the application of logic. Logic provides ...
We study quantum information and computation from a novel point of view. Our approach is based on re...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...
We propose a new typed graphical language for quantum computation, based on compact categories with ...