Graph Generation for Quantum States Using Qiskit and Its Application for Quantum Neural Networks

Author:

Tudorache Alexandru-Gabriel1ORCID

Affiliation:

1. Department of Computer Science and Engineering, “Gheorghe Asachi” Technical University of Iasi, D. Mangeron Street nr. 27A, 700050 Iasi, Romania

Abstract

This paper describes a practical approach to the quantum theory using the simulation and processing technology available today. The proposed project allows us to create an exploration graph so that for an initial starting configuration of the qubits, all possible states are created given a set of gates selected by the user. For each node in the graph, we can obtain various types of information such as the applied gates from the initial state (the transition route), necessary cost, representation of the quantum circuit, as well as the amplitudes of each state. The project is designed not as an end goal, but rather as a processing platform that allows users to visualize and explore diverse solutions for different quantum problems in a much easier manner. We then describe some potential applications of this project in other research fields, illustrating the way in which the states from the graph can be used as nodes in a new interpretation of a quantum neural network; the steps of a hybrid processing chain are presented for the problem of finding one or more states that verify certain conditions. These concepts can also be used in academia, with their implementation being possible with the help of the Python programming language, the NumPy library, and Qiskit—the open-source quantum framework developed by IBM.

Funder

“Gheorghe Asachi” Technical University of Iasi

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference22 articles.

1. (2023, January 23). IBM Unveils 400 Qubit-Plus Quantum Processor and Next-Generation IBM Quantum System Two. Available online: https://newsroom.ibm.com/2022-11-09-IBM-Unveils-400-Qubit-Plus-Quantum-Processor-and-Next-Generation-IBM-Quantum-System-Two.

2. (2023, January 23). Hello, Many Worlds|TensorFlow Quantum. Available online: https://www.tensorflow.org/quantum/tutorials/hello_many_worlds.

3. The quest for a Quantum Neural Network;Schuld;Quantum Inf. Process.,2014

4. A hybrid quantum-inspired neural networks with sequence inputs;Li;Neurocomputing,2013

5. Multi-class quantum classifiers with tensor network circuits for quantum phase recognition;Lazzarin;Phys. Lett. A,2022

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