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2 produkter
2 produkter
Superconducting Qubit Design Using Qiskit Metal
Engineering of Superconducting Quantum Architecture
Häftad, Engelska, 2025
580 kr
Skickas inom 3-6 vardagar
Understand and implement superconducting Qubit Design using Qiskit Metal in the Quantum Computing environment. This book provides practical knowledge and step-by-step guidance on designing, analyzing, and fabricating quantum chips.The book begins with an introduction to the fundamentals of quantum computing, covering essential terms, concepts, and the history of quantum computers. It explores the differences between quantum and classical computers and provides an overview of superconducting qubits. Next, you will learn the theory and practical aspects of superconducting qubits. Detailed mathematical and computational analyses of different qubit types and circuits are provided, along with a comprehensive guide to creating quantum circuits using Qiskit and Qiskit Metal. You will learn to design quantum chips and analyze components such as Josephson junctions and qubit couplers, using advanced methods such as the Lumped Oscillator Model, Quasi-Lumped Oscillator Model, and Energy Participation Ratio Method. Finally, the book covers the fabrication of superconducting qubits, detailing the manufacturing process, requirements, and methods to address fabrication issues.After reading this book, you will be able to advance your understanding and skills in this cutting-edge field, making complex concepts accessible and providing a roadmap for practical application. What You Will LearnInstall the Qiskit framework for creating basic quantum computing circuitsCreate your first superconducting qubit chip from scratchFormulate the back-end mathematical and computational model for the generated superconducting chipsUnderstand the Quasi-LOM (lumped oscillator model) and how it differs from the LOM Who This Book Is ForQuantum computing professionals working with superconducting qubits
ZX-Calculus for Quantum Circuits
A Diagrammatic Approach to Quantum Circuit Analysis and Optimization
Häftad, Engelska, 2026
551 kr
Kommande
ZX-Calculus has emerged as one of the most powerful frameworks for representing and optimizing quantum circuits—bridging the gap between abstract theory and real-world implementation. This book offers a complete and coding-driven introduction to ZX-Calculus, guiding readers from the mathematical and physical foundations of quantum circuits to the advanced techniques of diagrammatic reasoning and circuit optimization. Beginning with qubits, gates, and entanglement, you will gradually go through the principles of ZX-Calculus, spider rules, and diagrammatic equivalences that form the foundation of this visual and rigorous language.Building upon this foundation, the book takes a hands-on approach to applying ZX-Calculus in modern quantum development environments. You will explore open-source tools such as PyZX, Quantomatic, and ZX-Optimizer; learn to translate quantum circuits into diagrams and back; and perform real-world circuit optimizations that reduce resource costs for NISQ devices. Advanced chapters extend these ideas to phase gadgets, Clifford hierarchies, and measurement-based computation, while the final section dives into circuit fabrication from ZX nodes—linking theory directly to implementation.Whether you are a student, researcher, or professional developer, this book equips you with the theoretical insight, coding skills, and practical tools to design, optimize, and deploy efficient quantum circuits using the power of ZX-Calculus.What You Will Learn:Translate complex quantum operations into intuitive diagrammatic forms and simplify them through step-by-step transformationsIntegrate ZX-Calculus concepts into modern quantum computing workflows and frameworksMaster the fundamentals of ZX-Calculus and apply ZX-based methods for large-scale circuit optimizationDiscover how ZX-Calculus can be used in fermionic tensor networks, quantum error correction, and quantum machine learningWho This Book Is For:Researchers, Developers and Post graduate students in Quantum Computing.