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Theoretical Foundations of Quantum Computing - Softcover

Qiu Ph.D., Daowen

 
9780443277047: Theoretical Foundations of Quantum Computing

Inhaltsangabe

Theoretical Foundations of Quantum Computing is an essential textbook for introductory courses in the quantum computing discipline. Quantum computing represents a paradigm shift in understanding computation. This textbook delves into the principles of quantum mechanics that underpin this revolutionary technology, making it invaluable for undergraduate and graduate students in computer science and related fields. Structured into eight meticulously crafted chapters, it covers everything from the historical context of quantum computing to advanced theories and applications. The book includes core topics such as basic models, quantum algorithms, cryptography, communication protocols, complexity, and error correction codes.

Each chapter builds upon the last, ensuring a robust understanding of foundational concepts and cutting-edge research. It serves as both a foundational resource for students and a comprehensive guide for researchers interested in quantum computing. Its clarity makes it an excellent reference for deepening understanding or engaging in advanced research.

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Über die Autorin bzw. den Autor

Dr. Daowen Qiu completed his postdoctoral research at the Department of Computer Science, Tsinghua University in 2002 and was recruited to the Department of Computer Science at Sun Yat-sen University under the "Hundred Talents Program". Since 2004, he has been a professor and Ph.D. supervisor at the Department of Computer Science at Sun Yat-sen University. For over twenty years, he has been engaged in research on quantum computing and quantum information, making contributions in areas such as quantum computing models, quantum query algorithms, distributed quantum algorithms, semi-quantum key distribution, incompleteness and limit issues in quantum information, (fuzzy, probabilistic, and quantum) automata and discrete event systems.

His research integrates classical and quantum computing processes, aiming to achieve physical realizability and inherent superiority over classical computing. He has published over 200 academic papers in top-tier journals and conferences and authored an academic monograph on quantum automata. He currently serves as an editorial board member of the renowned international journal Theoretical Computer Science, an editorial board member of the international journal Quantum Reports, and an associate editor of the international journal Frontiers in Computer Science.

Von der hinteren Coverseite

Theoretical Foundations of Quantum Computing is the essential textbook designed specifically for introductory courses in this groundbreaking discipline. Quantum computing represents a paradigm shift in how we understand computation itself. This textbook delves deep into the fundamental principles of quantum mechanics that underpin this revolutionary technology, making it an invaluable resource for both undergraduate and graduate students in computer science and related fields. Structured into eight meticulously crafted chapters, this textbook covers everything from the historical context of quantum computing to advanced theories and applications. Each chapter is designed to build upon the last, ensuring that students develop a robust understanding of both foundational concepts and cutting-edge research. Chapter 1 briefly introduces the development history, background, and current status of quantum computing, and points out its advantages and potential applications; Chapter 2 describes the basic concepts related to quantum computing and points out that classical computing is a special case of quantum computing; Chapter 3 provides an overview of linear algebra, systematically summarizing the relevant theorems on operator (matrix) decomposition and hyperoperators; Chapter 4 states the basic quantum cryptography and communication protocols; Chapter 5 elaborates on basic quantum computing models, including quantum finite automata, quantum Turing machines, and quantum circuits; Chapter 6 introduces the core content of quantum computing, including important quantum algorithms It also introduces hidden subgroup algorithms and summarizes the basic tools for designing quantum algorithms, namely quantum phase estimation method and quantum amplitude amplification method; Chapter 7 introduces the basic knowledge and methods of quantum computing complexity; Chapter 8 introduces the basic concepts and methods of quantum error correction codes, as well as their error correction principles. This textbook not only serves as a foundational resource for students but also acts as a comprehensive guide for researchers interested in quantum computing. Its clarity and thoroughness make it an excellent reference for those looking to deepen their understanding or engage in cutting-edge research.

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