Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots
碩士 === 國立中央大學 === 電機工程學系 === 103 === In the thesis, combined the extened Hubbard and Anderson models to illustrate the effect of long-distance coherent tunneling(LDCT) on charge and heat currents in serially coupled tripled quantum dots(SCTQDs) connected to left and right electrodes. The transmisssi...
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ndltd-TW-103NCU054420392016-05-22T04:41:04Z http://ndltd.ncl.edu.tw/handle/08640565821185563213 Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots 三個串接耦合量子點系統的遠程同調穿隧 效應對電流及電子熱流的影響之分析 Shu-yuan Hsu 許淑媛 碩士 國立中央大學 電機工程學系 103 In the thesis, combined the extened Hubbard and Anderson models to illustrate the effect of long-distance coherent tunneling(LDCT) on charge and heat currents in serially coupled tripled quantum dots(SCTQDs) connected to left and right electrodes. The transmisssion coefficient of quantum dots in columb blockage regime can be calculated by Keldysh-Green’s function technique. The physical parameters including electron Coulomb interactions, electron hopping strengths, and bias-dependent quantum dot energy levels are calculated in the framework of effective mass theory for semiconductor TQDs. The interdot coupling strength decreases exponentially with the separation between QDs. Therefore, the charge and heat currents will become insignificant. If embedded another QD in the middle of two QDs, the effect of LDCT on the coherent of outside QDs can be robust. It’s possible to change the transmission characteristics by tuning the energy level of the middle QD. In addition, it is shown that prominent heat rectification behavior can exist in the TQD system with asymmetrical energy levels. Ming-ting Kuo 郭明庭 2015 學位論文 ; thesis 53 zh-TW |
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碩士 === 國立中央大學 === 電機工程學系 === 103 === In the thesis, combined the extened Hubbard and Anderson models to illustrate
the effect of long-distance coherent tunneling(LDCT) on charge and heat currents in
serially coupled tripled quantum dots(SCTQDs) connected to left and right electrodes.
The transmisssion coefficient of quantum dots in columb blockage regime can be
calculated by Keldysh-Green’s function technique. The physical parameters including
electron Coulomb interactions, electron hopping strengths, and bias-dependent
quantum dot energy levels are calculated in the framework of effective mass theory
for semiconductor TQDs. The interdot coupling strength decreases exponentially with
the separation between QDs. Therefore, the charge and heat currents will become
insignificant. If embedded another QD in the middle of two QDs, the effect of LDCT
on the coherent of outside QDs can be robust. It’s possible to change the transmission
characteristics by tuning the energy level of the middle QD. In addition, it is shown
that prominent heat rectification behavior can exist in the TQD system with
asymmetrical energy levels.
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author2 |
Ming-ting Kuo |
author_facet |
Ming-ting Kuo Shu-yuan Hsu 許淑媛 |
author |
Shu-yuan Hsu 許淑媛 |
spellingShingle |
Shu-yuan Hsu 許淑媛 Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots |
author_sort |
Shu-yuan Hsu |
title |
Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots |
title_short |
Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots |
title_full |
Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots |
title_fullStr |
Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots |
title_full_unstemmed |
Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots |
title_sort |
long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/08640565821185563213 |
work_keys_str_mv |
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