Reversible Computation: 17th International Conference, RC 2025, Odense, Denmark, July 3–4, 2025, Proceedings

Author:   Robert Glück ,  Robin Kaarsgaard
Publisher:   Springer International Publishing AG
Volume:   15716
ISBN:  

9783031970627


Pages:   163
Publication Date:   22 June 2025
Format:   Paperback
Availability:   Not yet available   Availability explained
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Reversible Computation: 17th International Conference, RC 2025, Odense, Denmark, July 3–4, 2025, Proceedings


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Overview

This book constitutes the refereed proceedings of the 17th International Conference on Reversible Computation, RC 2025, held in Odense, Denmark, during July 3–4, 2025. The 7 full papers and 5 short papers included in this book were carefully reviewed and selected from 22 submissions.The conference brought together researchers from computer science, mathematics, engineering, and physics to discuss new developments and directions for future research in the area of Reversible Computation.

Full Product Details

Author:   Robert Glück ,  Robin Kaarsgaard
Publisher:   Springer International Publishing AG
Imprint:   Springer International Publishing AG
Volume:   15716
ISBN:  

9783031970627


ISBN 10:   3031970624
Pages:   163
Publication Date:   22 June 2025
Audience:   Professional and scholarly ,  College/higher education ,  Professional & Vocational ,  Postgraduate, Research & Scholarly
Format:   Paperback
Publisher's Status:   Active
Availability:   Not yet available   Availability explained
This item is yet to be released. You can pre-order this item and we will dispatch it to you upon its release.
Language:   English

Table of Contents

.- Tallulah, a Tool to Support the Axiomatic Approach to Causal Consistent Reversibility. .- Independence and Causality in the Reversible Concurrent Setting. .- Encoding Choice and Replication in rollπ. .- Implementation of an Optimally Bounded Algorithm for Quantum State Preparation. .- Universal Graph Theory Operations for Graph State Preparation. .- On Exact Sizes of Minimal CNOT Circuits. .- Two small quantum building-blocks suffice. .- Approximate Optimisation of Quantum Circuits using the ZX-calculus with Phase Squashing. .- RevMiGo: Reversible channel-based communication in Go language. .- Towards a Characterization of Two-way Bijections in a Reversible Computational Model. .- Ancilla-free Quantum Adder with Sublinear Depth. .- Implementing Reversible Neural Networks..

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