Fidelity of quantum state transfer of a quantum dot spin qubit

This thesis is written to extend and to improve the previous work in coherent state transfer of singlet-triplet qubit states in linear quantum dots. In this thesis, we investigate the effect of adding rise and fall times of dc voltage pulses to the detuning energy time scale and propose a simple ana...

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Main Author: Wufianto, Livardy
Other Authors: Koh Teck Seng
Format: Final Year Project (FYP)
Language:English
Published: 2017
Subjects:
Online Access:http://hdl.handle.net/10356/70575
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author Wufianto, Livardy
author2 Koh Teck Seng
author_facet Koh Teck Seng
Wufianto, Livardy
author_sort Wufianto, Livardy
collection NTU
description This thesis is written to extend and to improve the previous work in coherent state transfer of singlet-triplet qubit states in linear quantum dots. In this thesis, we investigate the effect of adding rise and fall times of dc voltage pulses to the detuning energy time scale and propose a simple analytic model to further investigate the density matrix elements. In conclusion, the addition of finite rise and fall times of dc voltage pulses lower the fidelity of the state transfer and the longer the rise or fall time is, the lower the fidelity of the state transfer is. While the proposed analytic model and approximate equations give us more insight into the time evolution of density matrix elements. Thus, allowing us to compute better simulation time which increases the fidelity of state transfer by 1.54% to 2% for the case of $0.001 \tau.
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spelling ntu-10356/705752023-02-28T23:15:45Z Fidelity of quantum state transfer of a quantum dot spin qubit Wufianto, Livardy Koh Teck Seng School of Physical and Mathematical Sciences DRNTU::Science::Physics This thesis is written to extend and to improve the previous work in coherent state transfer of singlet-triplet qubit states in linear quantum dots. In this thesis, we investigate the effect of adding rise and fall times of dc voltage pulses to the detuning energy time scale and propose a simple analytic model to further investigate the density matrix elements. In conclusion, the addition of finite rise and fall times of dc voltage pulses lower the fidelity of the state transfer and the longer the rise or fall time is, the lower the fidelity of the state transfer is. While the proposed analytic model and approximate equations give us more insight into the time evolution of density matrix elements. Thus, allowing us to compute better simulation time which increases the fidelity of state transfer by 1.54% to 2% for the case of $0.001 \tau. Bachelor of Science in Physics 2017-05-02T02:57:33Z 2017-05-02T02:57:33Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/70575 en 48 p. application/pdf
spellingShingle DRNTU::Science::Physics
Wufianto, Livardy
Fidelity of quantum state transfer of a quantum dot spin qubit
title Fidelity of quantum state transfer of a quantum dot spin qubit
title_full Fidelity of quantum state transfer of a quantum dot spin qubit
title_fullStr Fidelity of quantum state transfer of a quantum dot spin qubit
title_full_unstemmed Fidelity of quantum state transfer of a quantum dot spin qubit
title_short Fidelity of quantum state transfer of a quantum dot spin qubit
title_sort fidelity of quantum state transfer of a quantum dot spin qubit
topic DRNTU::Science::Physics
url http://hdl.handle.net/10356/70575
work_keys_str_mv AT wufiantolivardy fidelityofquantumstatetransferofaquantumdotspinqubit