The Complexity of Noise : A Philosophical Outlook on Quantum Error Correction / by Amit Hagar
By: Hagar, Amit,, autor
Material type:
E-bookSeries: (Synthesis Lectures on Quantum Computing, 1945-9734).Publisher: Cham : Springer International Publishing, 2010Edition: 1st edition 2010.Description: 1 recurso en línea (XI, 71 páginas).ISBN: 9783031025143.Subject: Ordenadores cuánticos
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | QA76.889 2010 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook.01112761 |
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| QA76.889 2000 EB The Physics of Quantum Information : Quantum Cryptography, Quantum Teleportation, Quantum Computation | QA76.889 2008 EB Quantum Computer Science | QA76.889 2008 EB Quantum Walks for Computer Scientists | QA76.889 2010 EB The Complexity of Noise : A Philosophical Outlook on Quantum Error Correction | QA76.889 2011 EB Quantum Computing for Computer Architects | QA76.889 2012 EB High Level Structures for Quantum Computing | QA76.889 2014 EB Adiabatic Quantum Computation and Quantum Annealing : Theory and Practice |
Introduction -- The Curse of the Open System -- To Balance a Pencil on Its Tip -- Universality at All Cost -- Coda.
In quantum computing, where algorithms exist that can solve computational problems more efficiently than any known classical algorithms, the elimination of errors that result from external disturbances or from imperfect gates has become the "holy grail", and a worldwide quest for a large scale fault-tolerant, and computationally superior, quantum computer is currently taking place. Optimists rely on the premise that, under a certain threshold of errors, an arbitrary long fault-tolerant quantum computation can be achieved with only moderate (i.e., at most polynomial) overhead in computational cost. Pessimists, on the other hand, object that there are in principle (as opposed to merely technological) reasons why such machines are still inexistent, and that no matter what gadgets are used, large scale quantum computers will never be computationally superior to classical ones. Lacking a complete empirical characterization of quantum noise, the debate on the physical possibility of such machines invites philosophical scrutiny. Making this debate more precise by suggesting a novel statistical mechanical perspective thereof is the goal of this project. Table of Contents: Introduction / The Curse of the Open System / To Balance a Pencil on Its Tip / Universality at All Cost / Coda.
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