Quantum Computation with Topological Codes Quantum Computation with Topological Codes
SpringerBriefs in Mathematical Physics

Quantum Computation with Topological Codes

From Qubit to Topological Fault-Tolerance

    • ‏64٫99 US$
    • ‏64٫99 US$

وصف الناشر

This book presents a self-consistent review of quantum computation with topological quantum codes. The book covers everything required to understand topological fault-tolerant quantum computation, ranging from the definition of the surface code to topological quantum error correction and topological fault-tolerant operations. The underlying basic concepts and powerful tools, such as universal quantum computation, quantum algorithms, stabilizer formalism, and measurement-based quantum computation, are also introduced in a self-consistent way. The interdisciplinary fields between quantum information and other fields of physics such as condensed matter physics and statistical physics are also explored in terms of the topological quantum codes. This book thus provides the first comprehensive description of the whole picture of topological quantum codes and quantum computation with them.

النوع
علم وطبيعة
تاريخ النشر
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١٥ ديسمبر
اللغة
EN
الإنجليزية
عدد الصفحات
١٤٨
الناشر
Springer Nature Singapore
البائع
Springer Nature B.V.
الحجم
٤٫١
‫م.ب.‬
Quantum Information Processing, Quantum Computing, and Quantum Error Correction Quantum Information Processing, Quantum Computing, and Quantum Error Correction
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Quantum Information Processing and Quantum Error Correction Quantum Information Processing and Quantum Error Correction
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Quantum Information And Quantum Computing - Proceedings Of Symposium Quantum Information And Quantum Computing - Proceedings Of Symposium
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Theoretical Foundations of Quantum Information Processing and Communication Theoretical Foundations of Quantum Information Processing and Communication
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Quantum Information Quantum Information
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Diversities In Quantum Computation and Quantum Information Diversities In Quantum Computation and Quantum Information
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Supersymmetry and Noncommutative Geometry Supersymmetry and Noncommutative Geometry
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Quantum States of Light Quantum States of Light
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Bessel Processes, Schramm–Loewner Evolution, and the Dyson Model Bessel Processes, Schramm–Loewner Evolution, and the Dyson Model
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Free Boundary Problems in PDEs and Particle Systems Free Boundary Problems in PDEs and Particle Systems
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Lieb-Robinson Bounds for Multi-Commutators and Applications to Response Theory Lieb-Robinson Bounds for Multi-Commutators and Applications to Response Theory
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A Combinatorial Perspective on Quantum Field Theory A Combinatorial Perspective on Quantum Field Theory
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