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Beginning with introductory chapters on the required math and quantum mechanics, Fundamentals of Quantum Computing proceeds to describe four leading qubit modalities and explains the core principles of quantum computing in detail. Providing a step-by-step derivation of math and source code, some of the well-known quantum algorithms are explained in simple ways so the reader can try them either on IBM Q or Microsoft QDK. The book also includes a chapter on adiabatic quantum computing and modern concepts such as topological quantum computing and surface codes.
Features:
o Foundational chapters that build the necessary background on math and quantum mechanics.
o Examples and illustrations throughout provide a practical approach to quantum programming with end-of-chapter exercises.
o Detailed treatment on four leading qubit modalities -- trapped-ion, superconducting transmons, topological qubits, and quantum dots -- teaches how qubits work so that readers can understand how quantum computers work under the hood and devise efficient algorithms and error correction codes. Also introduces protected qubits - 0-¿ qubits, fluxon parity protected qubits, and charge-parity protected qubits.
o Principles of quantum computing, such as quantum superposition principle, quantum entanglement, quantum teleportation, no-cloning theorem, quantum parallelism, and quantum interference are explained in detail.
A dedicated chapter on quantum algorithm explores both oracle-based, and Quantum FourierTransform-based algorithms in detail with step-by-step math and working code that runs on IBM QisKit and Microsoft QDK. Topics on EPR Paradox, Quantum Key Distribution protocols, Density Matrix formalism, and Stabilizer formalism are intriguing. While focusing on the universal gate model of quantum computing, this book also introduces adiabatic quantum computing and quantum annealing.
This book includes a section on fault-tolerant quantum computing to make the discussions complete. The topics on Quantum Error Correction, Surface codes such as Toric code and Planar code, and protected qubits help explain how fault tolerance can be built at the system level.
Beginning with introductory chapters on the required math and quantum mechanics, Fundamentals of Quantum Computing proceeds to describe four leading qubit modalities and explains the core principles of quantum computing in detail. Providing a step-by-step derivation of math and source code, some of the well-known quantum algorithms are explained in simple ways so the reader can try them either on IBM Q or Microsoft QDK. The book also includes a chapter on adiabatic quantum computing and modern concepts such as topological quantum computing and surface codes.
Features:
o Foundational chapters that build the necessary background on math and quantum mechanics.
o Examples and illustrations throughout provide a practical approach to quantum programming with end-of-chapter exercises.
o Detailed treatment on four leading qubit modalities -- trapped-ion, superconducting transmons, topological qubits, and quantum dots -- teaches how qubits work so that readers can understand how quantum computers work under the hood and devise efficient algorithms and error correction codes. Also introduces protected qubits - 0-¿ qubits, fluxon parity protected qubits, and charge-parity protected qubits.
o Principles of quantum computing, such as quantum superposition principle, quantum entanglement, quantum teleportation, no-cloning theorem, quantum parallelism, and quantum interference are explained in detail.
A dedicated chapter on quantum algorithm explores both oracle-based, and Quantum FourierTransform-based algorithms in detail with step-by-step math and working code that runs on IBM QisKit and Microsoft QDK. Topics on EPR Paradox, Quantum Key Distribution protocols, Density Matrix formalism, and Stabilizer formalism are intriguing. While focusing on the universal gate model of quantum computing, this book also introduces adiabatic quantum computing and quantum annealing.
This book includes a section on fault-tolerant quantum computing to make the discussions complete. The topics on Quantum Error Correction, Surface codes such as Toric code and Planar code, and protected qubits help explain how fault tolerance can be built at the system level.
While contemporary, this book expects nothing more than a high school level physics, math, and some programming knowledge from its readers. The reader is equipped with adequate knowledge of quantum mechanics and the associated math before advanced topics are introduced
Includes detailed math and working code that runs on IBM Q and Microsoft QDK, enabling easy understanding of the well-established algorithms such as Deutsch-Jozsa, Bernstein-Vazirani, Simon's, Quantum Fourier Transform, Shor's, Grover's, Phase estimation, and quantum k-means
While the worked-out examples and chapter-end exercises reinforce the concepts, the accompanying illustrations make the learning exciting and easy. A reading guide helps readers pick up the starting point depending upon their background, and fulfill their learning goals with the book. Each chapter ends with a list of references for further reading
Erscheinungsjahr: | 2021 |
---|---|
Genre: | Informatik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Buch |
Inhalt: |
xxix
463 S. 16 s/w Illustr. 261 farbige Illustr. 463 p. 277 illus. 261 illus. in color. |
ISBN-13: | 9783030636883 |
ISBN-10: | 3030636887 |
Sprache: | Englisch |
Ausstattung / Beilage: | HC runder Rücken kaschiert |
Einband: | Gebunden |
Autor: | Kasirajan, Venkateswaran |
Auflage: | 1st ed. 2021 |
Hersteller: |
Springer International Publishing
Springer International Publishing AG |
Maße: | 260 x 183 x 33 mm |
Von/Mit: | Venkateswaran Kasirajan |
Erscheinungsdatum: | 22.06.2021 |
Gewicht: | 1,121 kg |
While contemporary, this book expects nothing more than a high school level physics, math, and some programming knowledge from its readers. The reader is equipped with adequate knowledge of quantum mechanics and the associated math before advanced topics are introduced
Includes detailed math and working code that runs on IBM Q and Microsoft QDK, enabling easy understanding of the well-established algorithms such as Deutsch-Jozsa, Bernstein-Vazirani, Simon's, Quantum Fourier Transform, Shor's, Grover's, Phase estimation, and quantum k-means
While the worked-out examples and chapter-end exercises reinforce the concepts, the accompanying illustrations make the learning exciting and easy. A reading guide helps readers pick up the starting point depending upon their background, and fulfill their learning goals with the book. Each chapter ends with a list of references for further reading
Erscheinungsjahr: | 2021 |
---|---|
Genre: | Informatik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Buch |
Inhalt: |
xxix
463 S. 16 s/w Illustr. 261 farbige Illustr. 463 p. 277 illus. 261 illus. in color. |
ISBN-13: | 9783030636883 |
ISBN-10: | 3030636887 |
Sprache: | Englisch |
Ausstattung / Beilage: | HC runder Rücken kaschiert |
Einband: | Gebunden |
Autor: | Kasirajan, Venkateswaran |
Auflage: | 1st ed. 2021 |
Hersteller: |
Springer International Publishing
Springer International Publishing AG |
Maße: | 260 x 183 x 33 mm |
Von/Mit: | Venkateswaran Kasirajan |
Erscheinungsdatum: | 22.06.2021 |
Gewicht: | 1,121 kg |