A framework for quantum-classical cryptographic translation
DOI10.1007/s10773-020-04698-5OpenAlexW3126500197WikidataQ114849587 ScholiaQ114849587MaRDI QIDQ2239408
Prosper Kandabongee Yeng, Peter Nimbe, Benjamin Asubam Weyori
Publication date: 5 November 2021
Published in: International Journal of Theoretical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10773-020-04698-5
quantum computingquantum cryptographyquantum bitsclassical cryptographyclassical computingcryptographic translation
Foundations, quantum information and its processing, quantum axioms, and philosophy (81Pxx) Communication, information (94Axx) Applications of quantum theory to specific physical systems (81Vxx)
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- Quantum cryptography: public key distribution and coin tossing
- \(Qcompiler\): quantum compilation with the CSD method
- Mathematical foundations of quantum information and computation and its applications to nano- and bio-systems
- Normal form approach to compiler design
- Greedy randomized search for scalable compilation of quantum circuits
- Optimizing adiabatic quantum program compilation using a graph-theoretic framework
- Tools for quantum and reversible circuit compilation
- REVS: a tool for space-optimized reversible circuit synthesis
- Mathematical models of quantum computation
- Verified compilation of space-efficient reversible circuits
- Phase space quantum-classical hybrid model
- Hamiltonian formulation of statistical ensembles and mixed states of quantum and hybrid systems
- Compiling quantum programs
- Quantum Finance
- Introduction to post-quantum cryptography
- Quantum Principles and Mathematical Models in Physics and Beyond
- Quantum to classical transition in the Hořava-Lifshitz quantum cosmology
- Hilbert bundles as quantum-classical continua
- Quantum-Like Models for Information Retrieval and Decision-Making
- Evaluating ESOP Optimization Methods in Quantum Compilation Flows
- Identification protocols and signature schemes based on supersingular isogeny problems
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