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Learn Quantum Computing with Python and IBM Quantum

Learn Quantum Computing with Python and IBM Quantum - Second Edition

By : Robert Loredo
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Learn Quantum Computing with Python and IBM Quantum

Learn Quantum Computing with Python and IBM Quantum

By: Robert Loredo

Overview of this book

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.
Table of Contents (18 chapters)
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14
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Index
1
Appendix A: Resources

Understanding Quantum Logic Gates

Quantum logic gates are very similar to their classical counterparts in that they are used to perform operations by manipulating the qubits in such a way that the results serve to provide a solution. Of course, that’s about as far as the comparison can go. Classical gates transition the state of a bit from one to the other by a single operation, in this case, flipping the bit value from 0 to 1, or vice versa. Quantum gates, sometimes referred to as qubit gates, are different in part because they perform linear transformations on one or more qubits in a complex vector space to transition them from one state to another.

The following topics will be covered in this chapter:

  • Reviewing classical logic gates
  • Understanding unitary operators
  • Understanding single-qubit gates
  • Understanding multi-qubit gates
  • Understanding non-reversible operators

After reading this chapter, you will have gained knowledge...

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