
Learn Quantum Computing with Python and IBM Quantum: Write your own practical quantum programs with Python 2nd Edition
Author(s): Robert Loredo (Author)
- Publisher: Packt Publishing
- Publication Date: 25 Feb. 2025
- Edition: 2nd
- Language: English
- Print length: 420 pages
- ISBN-10: 1803244801
- ISBN-13: 9781803244808
Book Description
A step-by-step guide to working with programs that exploit quantum computing principles, with the help of IBM Quantum, Qiskit, and Python
Key Features
- Understand the difference between classical computers and quantum computers
- Work with key quantum computational principles such as superposition, interference, and entanglement, and observe how they are leveraged on the IBM Quantum systems
- Run your own quantum experiments and applications by integrating with Qiskit and Python
Book Description
The IBM Quantum Platform was built to enable developers to learn the basics of quantum computing by providing access to high performant quantum computers and provide documentation and courses to help get up to speed with the latest features in quantum computing.
Updated with new examples and changes to the platform, this edition begins with an introduction to the IBM Quantum Platform and the Quantum Information Science Kit (Qiskit) SDK. You will become well versed in the IBM Quantum Composer interface as well as running your quantum circuits on a real quantum computer. Along the way, you’ll learn some of the fundamental principles regarding quantum mechanics, qubits, quantum gates, quantum circuits, and the error mitigation techniques that are used to perform operations on qubits.
As you build on your knowledge, you’ll understand the functionality of IBM Qiskit and the developer-focused resources so you can create your own quantum algorithms. You’ll learn how to monitor and optimize your quantum circuits. Lastly, you’ll look at the fundamental quantum algorithms and understand how they can be applied effectively.
By the end of this quantum computing book, you’ll know how to build quantum algorithms and will have gained a practical understanding of quantum computation that you can apply to your research or business.
What you will learn
- Get familiar with the features within the IBM Quantum Platform
- Create and visualize quantum gates and circuits
- Operate quantum gates on qubits using the IBM Quantum Composer
- Install and run your quantum circuits on an IBM Quantum computer
- Discover Qiskit and its many features such as the Qiskit Runtime
- Get to grips with fundamental quantum algorithms and error mitigation techniques to help you get started
- Understand the new era of quantum utility and how this moves us closer towards quantum advantage
Who this book is for
This book is for Python developers who are looking to learn quantum computing from the ground up and put their knowledge to use in practical situations with the help of the IBM Quantum Platform and Qiskit. Some background in computer science and high school-level physics and math is required.
Table of Contents
- Exploring the IBM Quantum Tools
- Creating Quantum Circuits with IBM Quantum Composer
- Introducing and Installing Qiskit
- Understanding Basic Quantum Computing Principles
- Understanding the Quantum Bit (Qubit)
- Understanding Quantum Logic Gates
- Programming with Qiskit
- Optimizing and Visualizing Quantum Circuits
- Simulating Quantum Systems and Noise Models
- Suppressing and Mitigating Quantum Noise
- Understanding Quantum Algorithms
- Applying Quantum Algorithms
- Understanding Quantum Utility and Qiskit Patterns
- Appendix A: Resources
- Appendix B: Assessments
Editorial Reviews
Review
“It has been many years since I read the first edition of Robert Loredo’s book, which provided just the right amount of foundational material to get fully acquainted with IBM’s quantum computing tools. A lot has changed since then, but this second edition stays true to its original scope while updating terminology and introducing the latest IBM Quantum and Qiskit advancements. It is a well-structured, beginner-friendly guide that effectively introduces readers to quantum computing with Python and Qiskit. The updates in this edition ensure that learners are working with IBM’s latest quantum tools, making it a valuable resource for those looking to get started with practical quantum programming. The updates reflect IBM’s shift toward more scalable quantum architectures, including 56-qubit systems and the 127-qubit Eagle processor.”
Alex Khan, Principal Consultant/Advisor Emerging Technologies, AI, Quantum Healthcare and Transformations, Aligned IT, LLC
“An excellent introduction to quantum computing, especially for Python programmers and tech enthusiasts interested in IBM’s Quantum tools. With its hands-on approach, structured content, and practical focus, this book is a valuable resource for beginners and intermediate learners. It encourages engagement with the IBM Quantum and Qiskit community, providing links to resources, documentation, and Discord groups, keeping readers updated in this fast-evolving field.”
Joseph Volkan Ozcan, Chief Information Technology Officer, Graniser Granit Seramik San. ve Tic.A.Ş.
“Loredo takes readers beyond the basics, showing how to code on real hardware, optimize and transpile circuits, and apply techniques for noise suppression and mitigation. This book provides a step-by-step structure, complete with exercises, visuals, and integration with IBM’s Quantum Platform. It avoids the toy examples of many beginner texts, making it very relevant for today’s learners.”
Borja Peropadre, Head of Quantum Algorithm Engineering, IBM Quantum at IBM
About the Author
Robert Loredo is the IBM Quantum Ambassador Worldwide lead with over 20 years’ experience in software architecture and engineering. He is a Qiskit Advocate and Master Inventor, listed as one of the world’s most prolific inventors with over 200 patents. He has presented various workshops, lectures, and articles covering quantum computing, artificial intelligence, and bioinformatics worldwide. As an adjunct professor, he has taught cloud computing and software engineering at the Florida International University School of Computer Science. He holds both a bachelor’s and a master’s degree in Computer and Electrical Engineering from the University of Miami and is currently pursuing his PhD in Computer Science, specializing in Quantum Machine Learning and NeuroInformatics, at Florida International University. As a philanthropist, one of his favorite charities is Doctors without Borders.
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