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Journal of applied research and technology

versão On-line ISSN 2448-6736versão impressa ISSN 1665-6423

J. appl. res. technol vol.10 no.2 Ciudad de México Abr. 2012

 

Design of a Qubit and a Decoder in Quantum Computing Based on a Spin Field Effect

 

A. A. Suratgar1, S. Rafiei*2, A. A. Taherpour3, A. Babaei4

 

1 Assistant Professor, Electrical Engineering Department, Faculty of Engineering, Arak University, Arak, Iran.

1 Assistant Professor, Electrical Engineering Department, Amirkabir University of Technology, Tehran, Iran.

2 Young Researchers Club, Aligudarz Branch, Islamic Azad University, Aligudarz, Iran. *saeid.rafiei@iau-aligudarz.ac.ir.

3 Professor, Chemistry Department, Faculty of Science, Islamic Azad University, Arak Branch, Arak, Iran.

4 Faculty member of Islamic Azad University, Khomein Branch, Khomein.

 

Abstract

In this paper we present a new method for designing a qubit and decoder in quantum computing based on the field effect in nuclear spin. In this method, the position of hydrogen has been studied in different external fields. The more we have different external field effects and electromagnetic radiation, the more we have different distribution ratios. Consequently, the quality of different distribution ratios has been applied to the suggested qubit and decoder model. We use the nuclear property of hydrogen in order to find a logical truth value. Computational results demonstrate the accuracy and efficiency that can be obtained with the use of these models.

Keywords: quantum computing, qubit, decoder, gyromagnetic ratio, spin.

 

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