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关于拓扑空间开集格的ΣF-core紧性 被引量:1
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作者 谢琳 宋玉靖 《辽宁师范大学学报(自然科学版)》 CAS 1996年第3期177-179,共3页
所谓一个格是ΣF-core紧的,是指在赋以Scot开滤子拓扑之后,这个格作为拓扑空间是core紧的.
关键词 连续 ΣF-core紧性 拓扑空间 开集格
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Locale连通性(Ⅰ)
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作者 白仲林 《西北师范大学学报(自然科学版)》 CAS 1990年第2期18-20,共3页
引进 Locale 连通性的合适定义,证明了一个拓扑空间 X 的开集格是连通 Locale 当且仅当 X 是连通空间,同时还给出了连通 Locale 的一些性质。
关键词 Locale连通性 拓扑空间 开集格
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Investigation of Terminal Group Effect on Electron Transport Through Open Molecular Structures
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作者 C. Preferencial Kala P. Aruna Priya D. John Thiruvadigal 《Communications in Theoretical Physics》 SCIE CAS CSCD 2013年第5期649-654,共6页
The effect of terminal groups on the electron transport through metal-molecule-metal system has been investigated using nonequilibrium Green's function (NEGF) formalism combined with extended Huckel theory (EHT). ... The effect of terminal groups on the electron transport through metal-molecule-metal system has been investigated using nonequilibrium Green's function (NEGF) formalism combined with extended Huckel theory (EHT). Au-molecule-Au junctions are constructed with borazine and BCN unit structure as core molecule and sulphur (S), oxygen (O), selenium (Se) and cyano-group (CN) as terminal groups. The electron transport characteristics of the borazine and BCN molecular systems are analyzed through the transmission spectra and the current-voltage curve. The results demonstrate that the terminal groups modifying the transport behaviors of these systems in a controlled way. Our result shows that, selenium is the best linker to couple borazine to Au electrode and oxygen is the best one to couple BCN to Au electrode. Furthermore, the results of borazine systems are compared with that of BCN molecular systems and are discussed. Simulation results show that the conductance through BCN molecular systems is four times larger than the borazine molecular systems. Negative differential resistance behavior is observed with borazine-CN system and the saturation feature appears in BCN systems. 展开更多
关键词 molecular electronics extended Huckel theory (EHT) nonequilibrium Green’s function (NEGF) quantum transport
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