Effect of dephasing on single-qubit rotation gates

In this paper we investigate the effect of dephasing on the performance of the quantum rotation gate implemented by adiabatic passage and static laser pulses proposed in Lacour et al (2006 Opt. Commun. 264 362). We show that in an open system, where the three-level lambda system is subjected to deph...

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Main Authors: Issoufa, Youssouf Hamidou, Messikh, Azeddin
Format: Article
Language:English
Published: Institute of Physics Publishing (IOP) 2010
Subjects:
Online Access:http://irep.iium.edu.my/8559/1/effect_of_dephasing_on_single-qubitnrotation_gates.pdf
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author Issoufa, Youssouf Hamidou
Messikh, Azeddin
author_facet Issoufa, Youssouf Hamidou
Messikh, Azeddin
author_sort Issoufa, Youssouf Hamidou
collection IIUM
description In this paper we investigate the effect of dephasing on the performance of the quantum rotation gate implemented by adiabatic passage and static laser pulses proposed in Lacour et al (2006 Opt. Commun. 264 362). We show that in an open system, where the three-level lambda system is subjected to dephasing of its ground states, the dephasing will introduce additional dynamic phases which cannot be recompensated as in the closed system. We analyse the evolution of the population by using the quantum jump approach. The results are obtained assuming realistic dephasing rates Γ0 1
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spelling oai:generic.eprints.org:85592012-02-29T05:49:54Z http://irep.iium.edu.my/8559/ Effect of dephasing on single-qubit rotation gates Issoufa, Youssouf Hamidou Messikh, Azeddin T Technology (General) In this paper we investigate the effect of dephasing on the performance of the quantum rotation gate implemented by adiabatic passage and static laser pulses proposed in Lacour et al (2006 Opt. Commun. 264 362). We show that in an open system, where the three-level lambda system is subjected to dephasing of its ground states, the dephasing will introduce additional dynamic phases which cannot be recompensated as in the closed system. We analyse the evolution of the population by using the quantum jump approach. The results are obtained assuming realistic dephasing rates Γ0 1 Institute of Physics Publishing (IOP) 2010 Article PeerReviewed application/pdf en http://irep.iium.edu.my/8559/1/effect_of_dephasing_on_single-qubitnrotation_gates.pdf Issoufa, Youssouf Hamidou and Messikh, Azeddin (2010) Effect of dephasing on single-qubit rotation gates. Journal of Physic B : Atomic, Molecular and Optical Physics, 43 (21). 215506-1-215506-6. ISSN 0953-4075 http://iopscience.iop.org/0953-4075/43/21/215506 10.1088/0953-4075/43/21/215506
spellingShingle T Technology (General)
Issoufa, Youssouf Hamidou
Messikh, Azeddin
Effect of dephasing on single-qubit rotation gates
title Effect of dephasing on single-qubit rotation gates
title_full Effect of dephasing on single-qubit rotation gates
title_fullStr Effect of dephasing on single-qubit rotation gates
title_full_unstemmed Effect of dephasing on single-qubit rotation gates
title_short Effect of dephasing on single-qubit rotation gates
title_sort effect of dephasing on single qubit rotation gates
topic T Technology (General)
url http://irep.iium.edu.my/8559/1/effect_of_dephasing_on_single-qubitnrotation_gates.pdf
work_keys_str_mv AT issoufayoussoufhamidou effectofdephasingonsinglequbitrotationgates
AT messikhazeddin effectofdephasingonsinglequbitrotationgates