Fundamentals of Quantum Computing Theory and Practice / by Venkateswaran Kasirajan.
By: Kasirajan, Venkateswaran, Fundamentals of Quantum Computing Theory and Practice
Material type:
E-bookSeries: (Computer Science (SpringerNature-11645)); (Computer Science (R0) (SpringerNature-43710)).Publisher: Cham : Springer International Publising, 2021Edition: First edition 2021.Description: 1 recurso en línea (XXIX, 463 páginas) : 277 ilustraciones, 261 ilustraciones a color.ISBN: 9783030636890.Subject: Ordenadores cuánticos
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | QA76.889 2021 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook.19122239 |
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| QA76.889 2020 EB Quantum Computer Systems : Research for Noisy Intermediate-Scale Quantum Computers | QA76.889 2021 EB Concise guide to quantum computing : algorithms, exercises, and implementations | QA76.889 2021 EB Quantum Computing: An Applied Approach | QA76.889 2021 EB Fundamentals of Quantum Computing Theory and Practice | QA76.889 2022 EB Quantum Computing in the Arts and Humanities : an Introduction to Core Concepts, Theory and Applications | QA76.889 2022 EB Introduction to Quantum Computing From a Layperson to a Programmer in 30 Steps | QA76.889 2022 EB Quantum Computing Environments |
PART ONE -- 1 Foundations of Quantum Mechanics -- 2 Dirac's bra-ket notation and Hermitian Operators -- 3 The Quantum Superposition Principle and Bloch Sphere Representation -- PART TWO -- 4 Qubit Modalities -- 5 Quantum Circuits and DiVincenzo Criteria -- 6 Quantum Communications -- 7 Quantum Algorithms -- 8 Adiabatic Optimization and Quantum Annealing -- 9 Quantum Error Correction -- 10 Conclusion.
This introductory book on quantum computing includes an emphasis on the development of algorithms. Appropriate for both university students as well as software developers interested in programming a quantum computer, this practical approach to modern quantum computing takes the reader through the required background and up to the latest developments. 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-π qubits, fluxon parity protected qubits, and charge-parity protected qubits. o Principles of quantum computing such as quantum entanglement, no-cloning theorem, quantum teleportation, quantum interference, superdense coding, quantum parallelism, and adiabatic quantum computing.
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