Quantum Information Processing, Quantum Computing, and Quantum Error Correction

- An Engineering Approach

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

The Second Edition of Quantum Information Processing, Quantum Computing, and Quantum Error Correction: An Engineering Approach presents a self-contained introduction to all aspects of the area, teaching the essentials such as state vectors, operators, density operators, measurements, and dynamics of a quantum system. In additional to the fundamental principles of quantum computation, basic quantum gates, basic quantum algorithms, and quantum information processing, this edition has been brought fully up to date, outlining the latest research trends. These include: Key topics include: Quantum error correction codes (QECCs), including stabilizer codes, Calderbank-Shor-Steane (CSS) codes, quantum low-density parity-check (LDPC) codes, entanglement-assisted QECCs, topological codes, and surface codes Quantum information theory, and quantum key distribution (QKD) Fault-tolerant information processing and fault-tolerant quantum error correction, together with a chapter on quantum machine learning. Both quantum circuits- and measurement-based quantum computational models are described The next part of the book is spent investigating physical realizations of quantum computers, encoders and decoders; including photonic quantum realization, cavity quantum electrodynamics, and ion traps In-depth analysis of the design and realization of a quantum information processing and quantum error correction circuits This fully up-to-date new edition will be of use to engineers, computer scientists, optical engineers, physicists and mathematicians.

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Detaljer
  • SprogEngelsk
  • Sidetal838
  • Udgivelsesdato22-02-2021
  • ISBN139780128219829
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt1770 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,4 cm

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    Entropy Information theory Neural networks Measurements Machine learning Fault tolerance Quantum teleportation Fault-tolerant computing Quantum dots Quantum computing Security Reinforcement learning Quantum entanglement Quantum channels Quantum Information Processing Density Operators Quantum Parallelism Ion traps Cyclic codes Quantum Fourier Transform Clustering Quantum machine learning Channel coding Quantum Gates Hydrogen-like atoms Quantum states Quantum circuits Adiabatic quantum computing Orbital angular momentum Source coding Quantum Key Distribution (QKD) Principal Component Analysis (PCA) Quantum measurements Harmonic Oscillator Quantum error correction Grover search algorithm Accuracy threshold theorem Cluster state quantum computing Bernstein-Vazirani algorithm Continuous variable (CV)-QKD Collective attacks BCH codes Classical LDPC codes Cluster state Cluster state processing Decoy-state protocols Deutsch's algorithm Entanglement-assisted quantum codes Encoded operators Di Vincenzo criteria Efficient encoding and decoding Fault-tolerant state/encoded state preparation Coherent attacks Concatenated codes Fault-tolerant stabilizer codes Gaussian modulation CV-QKD Deutsch-Jozsa algorithm Discrete variable (DV)-QKD Harrow-Hassidim-Lloyd (HHL) algorithm Holevo Dual-containing quantum LDPC codes Information reconciliation Entanglement-assisted quantum LDPC codes Measurement-based quantum computing Fault-tolerant measurements Iterative decoding of quantum LDPC codes Finite geometry interpretation Fault-tolerant syndrome extraction Nonbinary stabilizer codes Gaussian quantum information theory Graph state Pauli operators Photonic implementations Operator-sum representation Quantum channel models Quantum Neural Networks Quantum Operations Quantum RAM Product codes RS Codes Quantum Key Distribution Quantum relay implementation Quadratic unconstrained binary optimization Quantum approximate optimization algorithm Quantum encoders and decoders Quantum K-means Holevo-Schumacher-Westmoreland (HSW) theorem Large-scale quantum computing Linear block codes Quantum PCA One-way quantum computing Nuclear magnetic resonance implementation Optical cavity electrodynamics Quantum coding bounds Quantum SVM Schumacher's source coding theorem

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