Generalized quantum rotation gates using STIRAP

In this paper we focus on the generalized quantum rotation gates in the presence of dephasing. We follow the model proposed by Lacour et. al. [1] and extend their technique by applying the quantum jump approach. This approach clearly illustrates the acquired phases which cannot be recompensated...

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Main Authors: Issoufa, Youssouf Hamidou, Az Eddine, Messikh, Wahiddin, Mohamed Ridza, Umarov, Bakhram A., Gharib, Subhi Mahmoud Ahmed
Format: Proceeding Paper
Language:English
Published: 2013
Subjects:
Online Access:http://irep.iium.edu.my/31043/8/Ridza_06518925.pdf
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author Issoufa, Youssouf Hamidou
Az Eddine, Messikh
Wahiddin, Mohamed Ridza
Umarov, Bakhram A.
Gharib, Subhi Mahmoud Ahmed
author_facet Issoufa, Youssouf Hamidou
Az Eddine, Messikh
Wahiddin, Mohamed Ridza
Umarov, Bakhram A.
Gharib, Subhi Mahmoud Ahmed
author_sort Issoufa, Youssouf Hamidou
collection IIUM
description In this paper we focus on the generalized quantum rotation gates in the presence of dephasing. We follow the model proposed by Lacour et. al. [1] and extend their technique by applying the quantum jump approach. This approach clearly illustrates the acquired phases which cannot be recompensated and leads to imperfect gates. Numerical solutions for these phases were obtained assuming realistic dephasing rates.
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institution International Islamic University Malaysia
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spelling oai:generic.eprints.org:310432020-06-04T08:39:26Z http://irep.iium.edu.my/31043/ Generalized quantum rotation gates using STIRAP Issoufa, Youssouf Hamidou Az Eddine, Messikh Wahiddin, Mohamed Ridza Umarov, Bakhram A. Gharib, Subhi Mahmoud Ahmed T10.5 Communication of technical information TA329 Engineering mathematics. Engineering analysis TJ Mechanical engineering and machinery In this paper we focus on the generalized quantum rotation gates in the presence of dephasing. We follow the model proposed by Lacour et. al. [1] and extend their technique by applying the quantum jump approach. This approach clearly illustrates the acquired phases which cannot be recompensated and leads to imperfect gates. Numerical solutions for these phases were obtained assuming realistic dephasing rates. 2013 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/31043/8/Ridza_06518925.pdf Issoufa, Youssouf Hamidou and Az Eddine, Messikh and Wahiddin, Mohamed Ridza and Umarov, Bakhram A. and Gharib, Subhi Mahmoud Ahmed (2013) Generalized quantum rotation gates using STIRAP. In: The 4th International Conference on Information & Communication Technology for the Muslim World (ICT4M), 25-27 Mar 2013, Rabat, Moroco. http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=6518925&tag=1
spellingShingle T10.5 Communication of technical information
TA329 Engineering mathematics. Engineering analysis
TJ Mechanical engineering and machinery
Issoufa, Youssouf Hamidou
Az Eddine, Messikh
Wahiddin, Mohamed Ridza
Umarov, Bakhram A.
Gharib, Subhi Mahmoud Ahmed
Generalized quantum rotation gates using STIRAP
title Generalized quantum rotation gates using STIRAP
title_full Generalized quantum rotation gates using STIRAP
title_fullStr Generalized quantum rotation gates using STIRAP
title_full_unstemmed Generalized quantum rotation gates using STIRAP
title_short Generalized quantum rotation gates using STIRAP
title_sort generalized quantum rotation gates using stirap
topic T10.5 Communication of technical information
TA329 Engineering mathematics. Engineering analysis
TJ Mechanical engineering and machinery
url http://irep.iium.edu.my/31043/8/Ridza_06518925.pdf
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