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Quantum error-correcting codes from algebraic curves
Quantum error-correcting codes from algebraic curves

Do we really understand quantum mechanics?
Do we really understand quantum mechanics?

MODULE MAPS OVER LOCALLY COMPACT QUANTUM GROUPS
MODULE MAPS OVER LOCALLY COMPACT QUANTUM GROUPS

Adiabatic Quantum State Generation and Statistical Zero Knowledge
Adiabatic Quantum State Generation and Statistical Zero Knowledge

... as we will see, it seems that this language lends itself more easily than the standard circuit model to developing general tools. In order to provide a framework for the study of state generation using the adiabatic language, we define adiabatic quantum state generation as general as we can. Thus, w ...
Technical Roadmap for Fault-Tolerant Quantum Computing
Technical Roadmap for Fault-Tolerant Quantum Computing

... of the physical system, which is known as the ground state of the system. Physics shows that if any system is initiated in its ground state, or lowest energy state, and the parameters are slowly changed in the system, the system always remains in the ground state (of the new system). In practice, th ...
Regular/irregular phase space structure of HCN/HNC
Regular/irregular phase space structure of HCN/HNC

Quantum Computing - Department of Computing
Quantum Computing - Department of Computing

pdf
pdf

Quantum Computing and Communications
Quantum Computing and Communications

... the most manageable or etc. Hence error analysis must be kept always in the focus of investigations. All these endeavors are motivated by the fact that engineers should learn how to design new practical solutions. We always had this philosophy in sight when ...
Compiler Management of Communication and Parallelism for
Compiler Management of Communication and Parallelism for

Quantum computing with photons: introduction to the circuit model
Quantum computing with photons: introduction to the circuit model

Toward a scalable, silicon-based quantum computing architecture
Toward a scalable, silicon-based quantum computing architecture

Quantum error correction
Quantum error correction

The Age of Entanglement  Quantum Computing the (Formerly) Uncomputable
The Age of Entanglement Quantum Computing the (Formerly) Uncomputable

Quantum Computation and Quantum Information 10th Anniversary
Quantum Computation and Quantum Information 10th Anniversary

... 10th Anniversary Edition One of the most cited books in physics of all time, Quantum Computation and Quantum Information remains the best textbook in this exciting field of science. This 10th Anniversary Edition includes a new Introduction and Afterword from the authors setting the work in context. ...
Towards a Quantum Programming Language
Towards a Quantum Programming Language

... or composite) statement operates by transforming a specific set of inputs to outputs. This is in contrast to imperative programming languages, which operate by updating global variables. Our language is also statically typed, which implies that the well-formedness of a program can be checked at comp ...
Reply to criticism of the ‘Orch OR qubit’ – ‘Orchestrated... reduction’ is scientifically justified
Reply to criticism of the ‘Orch OR qubit’ – ‘Orchestrated... reduction’ is scientifically justified

Application of Quantum Computing principles to Natural Language Processing
Application of Quantum Computing principles to Natural Language Processing

Quantum Proofs for Classical Theorems
Quantum Proofs for Classical Theorems

Resonances, dissipation and decoherence in exotic and artificial atoms
Resonances, dissipation and decoherence in exotic and artificial atoms

Quantum Computation and Quantum Information
Quantum Computation and Quantum Information

Topics in Applied Physics Volume 115
Topics in Applied Physics Volume 115

Lecture, Week 1: September 27th - October 3rd, 1999 Outline 1
Lecture, Week 1: September 27th - October 3rd, 1999 Outline 1

Entanglement and its Role in Shor`s Algorithm
Entanglement and its Role in Shor`s Algorithm

Unconditionally Secure Quantum Signatures
Unconditionally Secure Quantum Signatures

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Basil Hiley

Basil J. Hiley (born 1935), is a British quantum physicist and professor emeritus of the University of London. He received the Majorana Prize ""Best person in physics"" in 2012.Long-time co-worker of David Bohm, Hiley is known for his work with Bohm on implicate orders and for his work on algebraic descriptions of quantum physics in terms of underlying symplectic and orthogonal Clifford algebras. Hiley co-authored the book The Undivided Universe with David Bohm, which is considered the main reference for Bohm's interpretation of quantum theory.The work of Bohm and Hiley has been characterized as primarily addressing the question ""whether we can have an adequate conception of the reality of a quantum system, be this causal or be it stochastic or be it of any other nature"" and meeting the scientific challenge of providing a mathematical description of quantum systems that matches the idea of an implicate order.
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