Encoding Two-Qubit Logical States and Quantum Operations Using the Energy States of a Physical System

Ntalaperas, Dimitrios and Konofaos, Nikos (2021) Encoding Two-Qubit Logical States and Quantum Operations Using the Energy States of a Physical System. Technologies, 10 (1). p. 1. ISSN 2227-7080

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Abstract

In this paper, we introduce a novel coding scheme, which allows single quantum systems to encode multi-qubit registers. This allows for more efficient use of resources and the economy in designing quantum systems. The scheme is based on the notion of encoding logical quantum states using the charge degree of freedom of the discrete energy spectrum that is formed by introducing impurities in a semiconductor material. We propose a mechanism of performing single qubit operations and controlled two-qubit operations, providing a mechanism for achieving these operations using appropriate pulses generated by Rabi oscillations. The above architecture is simulated using the Armonk single qubit quantum computer of IBM to encode two logical quantum states into the energy states of Armonk’s qubit and using custom pulses to perform one and two-qubit quantum operations.

Item Type: Article
Subjects: Academic Digital Library > Multidisciplinary
Depositing User: Unnamed user with email info@academicdigitallibrary.org
Date Deposited: 20 Mar 2023 05:39
Last Modified: 02 Dec 2023 05:41
URI: http://publications.article4sub.com/id/eprint/995

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