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Superconducting Qubit Design Using Qiskit Metal: Engineering of Quantum ArchitectureSuperconducting Qubit Design Using Qiskit Metal: Engineering of Quantum Architecture

Superconducting Qubit Design Using Qiskit Metal: Engineering of Quantum Architecture in Vernon, BC

Current price: $75.99
Original price: $94.94
Buy Online
Superconducting Qubit Design Using Qiskit Metal: Engineering of Quantum Architecture

Coles

Superconducting Qubit Design Using Qiskit Metal: Engineering of Quantum Architecture in Vernon, BC

Current price: $75.99
Original price: $94.94
Loading Inventory...

Size: Kobo eBook

Buy Online
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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 Learn Install the Qiskit framework for creating basic quantum computing circuits Create your first superconducting qubit chip from scratch Formulate the back-end mathematical and computational model for the generated superconducting chips Understand the Quasi-LOM (lumped oscillator model) and how it differs from the LOM   Who This Book Is For Quantum computing professionals working with superconducting qubits
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 Learn Install the Qiskit framework for creating basic quantum computing circuits Create your first superconducting qubit chip from scratch Formulate the back-end mathematical and computational model for the generated superconducting chips Understand the Quasi-LOM (lumped oscillator model) and how it differs from the LOM   Who This Book Is For Quantum computing professionals working with superconducting qubits

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