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商品描述
An expert discussion of the potential evolution of quantum codes
In From Classical to Quantum Coding, a team of distinguished researchers deliver a seamless research monograph on the subject of quantum error correction codes (QECC) designed for mitigating the environment-induced decoherence imposed on quantum computing and communications. Commencing from first principles, Part I is dedicated to readers familiar with classical coding and wishing to move into quantum coding. Part II focuses on near-term quantum codes requiring a modest to moderate number of qubits. Finally, Part III of the book offers an outlook on the classical to quantum evolution of QECCs, to advanced codes that rely on numerous qubits as quantum technology matures.
The book incorporates several advanced topics, including the universal decoding of arbitrary linear codes, iterative short turbo block codes, turbo convolutional codes, and the family of low-density parity check codes. The powerful design tool of extrinsic information transfer charts plays a central role in the associated near-hashing-bound designs.
Readers will also find:
- An easy-reading introduction to quantum information processing and quantum coding
- An evolutionary portrayal of the classical to quantum coding paradigm
- Practical discussions of near-term quantum topological error correction codes and how they protect quantum gates from decoherence
- Detailed treatments of syndrome-based decoding of diverse quantum turbo codes and quantum low-density parity check codes
From Classical to Quantum Coding will benefit doctoral students, industrial and academic researchers wishing to expand their expertise from the classical to the quantum field of signal processing, computing and communications.
商品描述(中文翻譯)
量子編碼潛在演變的專家討論
在從經典到量子編碼一書中,一組傑出的研究者提供了一本無縫的研究專著,探討量子錯誤更正碼(QECC)的主題,旨在減輕量子計算和通信中環境引起的去相干影響。第一部分從基本原理開始,專為熟悉經典編碼並希望轉向量子編碼的讀者而設。第二部分專注於需要適度至中等數量量子位(qubits)的近期量子編碼。最後,書籍的第三部分展望了QECC從經典到量子的演變,至依賴大量量子位的先進編碼,隨著量子技術的成熟而發展。
本書涵蓋幾個先進主題,包括任意線性碼的通用解碼、迭代短期渦輪區塊碼、渦輪卷積碼以及低密度奇偶檢查碼的家族。外部信息傳遞圖表這一強大的設計工具在相關的近哈希界限設計中扮演了核心角色。
讀者還將發現:
- 量子信息處理和量子編碼的易讀介紹
- 經典到量子編碼範式的演變描繪
- 近期量子拓撲錯誤更正碼的實用討論,以及它們如何保護量子閘免受去相干影響
- 多樣量子渦輪碼和量子低密度奇偶檢查碼的基於綜合症解碼的詳細處理
從經典到量子編碼將使博士生、希望擴展其專業知識的工業和學術研究者受益,從經典信號處理、計算和通信領域轉向量子領域。
作者簡介
Zunaira Babar is a Senior Algorithm Engineer at VIAVI Solutions Inc.
Daryus Chandra is a Senior Quantum Error Correction Researcher at Photonic Inc.
Soon Xin Ng, PhD, is a Full Professor of Telecommunications at the University of Southampton, UK.
Lajos Hanzo is a Fellow of the Royal Academy of Engineering and a Foreign Member of the Hungarian Academy of Sciences.
作者簡介(中文翻譯)
Zunaira Babar 是 VIAVI Solutions Inc. 的資深演算法工程師。
Daryus Chandra 是 Photonic Inc. 的資深量子錯誤更正研究員。
Soon Xin Ng, PhD, 是英國南安普敦大學的全職電信教授。
Lajos Hanzo 是英國皇家工程院院士及匈牙利科學院外籍成員。