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Dancing with Qubits

You're reading from   Dancing with Qubits From qubits to algorithms, embark on the quantum computing journey shaping our future

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Product type Paperback
Published in Mar 2024
Publisher Packt
ISBN-13 9781837636754
Length 684 pages
Edition 2nd Edition
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Author (1):
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Robert S. Sutor Robert S. Sutor
Author Profile Icon Robert S. Sutor
Robert S. Sutor
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Table of Contents (26) Chapters Close

Preface I Foundations
Why Quantum Computing FREE CHAPTER They’re Not Old, They’re Classics More Numbers Than You Can Imagine Planes and Circles and Spheres, Oh My Dimensions 6 What Do You Mean “Probably”? II Quantum Computing
One Qubit Two Qubits, Three Wiring Up the Circuits From Circuits to Algorithms Getting Physical III Advanced Topics
Considering NISQ Algorithms Introduction to Quantum Machine Learning Questions about the Future Afterword
A Quick Reference B Notices C Production Notes Other Books You May Enjoy
References
Index
Appendices

10.4 Phase kickback

In section 9.8.2, we saw an example of phase kickback while working with oracles. In this section, we look at the concept again in the context of controlled z-rotation gates. We need this within Shor’s factoring algorithm to estimate eigenvalues. phase$kickback

Consider the circuit in Figure 10.8.

 Figure 10.8: A circuit with a Hadamard and controlled z-rotation gate

As we saw in section 7.6.6, |1⟩ is an eigenvector of Rφz with eigenvalue e φi:

Displayed math

The initial quantum state in Figure 10.8 is |00⟩ = |0⟩⊗|0⟩. We apply HX, yielding

Displayed math

We apply the CRφz:

Displayed math

We began with q0 as the control qubit. The phase from the Rφz gate conditionally applied to q1 ends up causing the phase e φi to appear in the state of q0. The state of q1 was not changed from |1⟩. This is the phase...

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