博碩士論文 106521007 完整後設資料紀錄

DC 欄位 語言
DC.contributor電機工程學系zh_TW
DC.creator童禹謀zh_TW
DC.creatorYu-Mou Tungen_US
dc.date.accessioned2019-6-26T07:39:07Z
dc.date.available2019-6-26T07:39:07Z
dc.date.issued2019
dc.identifier.urihttp://ir.lib.ncu.edu.tw:88/thesis/view_etd.asp?URN=106521007
dc.contributor.department電機工程學系zh_TW
DC.description國立中央大學zh_TW
DC.descriptionNational Central Universityen_US
dc.description.abstract本論文探討了在線性響應下和金屬電極相連的量子點超晶格奈米線(SLNW)的熱電特性。對於短SLNW,我們討論不同的Transmission Functions (TFs) 對熱電係數的影響,當熱離子輔助穿隧程序(TATP)支配電極間電子傳輸時,quasi-square shape有比boxcar shape大的功率因數。對於長SLNW,席貝克係數 (Seebeck coefficient)不受電子穿隧率及能階簡併的影響,這是與電導率和電子熱導率不同的。而當電極的費米能量位於次能帶之間的間隙時,該區域中的熱電效率受到鄰近效應的抑制。在TATP中的熱電效率比直接隧穿程序大得多,因為席貝克係數在直接穿隧程序中的值非常小。最後,我們已經證明,由於TATP中能階簡併態的增加,熱電優值也得到了提升。zh_TW
dc.description.abstractWe theoretically study the thermoelectric properties of quantum dot nanowire (SLNW) connected to electrodes in the linear regime. For a short SLNW, we clarify the effects of different Transmission Functions (TFs) on the thermoelectrical coefficients. When thermionic assisted tunneling procedure (TATP) dominates electron transport between electrodes, the power factor given by TF with quasi-square shape is larger than that of TF with boxcar shape. Unlike electrical conductance and electron thermal conductance, the Seebeck coefficient is a very robust thermoelectrical quantity with respect to electron tunneling rate, energy level fluctuation and energy level degeneracy for a long SLNW. When the Fermi energy of electrodes locates at gap between subbands, thermoelectric efficiency in this region is sup-pressed by the proximity effect. The thermoelectric efficiency is much large in TATP than in direct tunneling procedure, because the Seebeck coefficient is much small in the direct tunneling procedure. Finally, we have demonstrated that the figure of merit is enhanced due to increase of energy level degeneracy in the TATP.en_US
DC.subject量子點zh_TW
DC.subject奈米線zh_TW
DC.subject熱電特性zh_TW
DC.subjectThermoelectricen_US
DC.subjectquantum doten_US
DC.subjectnanowiresen_US
DC.title量子點奈米線之熱電特性zh_TW
dc.language.isozh-TWzh-TW
DC.titleThermoelectric properties of quantum dot nanowiresen_US
DC.type博碩士論文zh_TW
DC.typethesisen_US
DC.publisherNational Central Universityen_US

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