The effect of phase-breaking process on the ac response of a coupled double quantum dot is studied in this paper based on the nonequilibrium Green function formalism. A general expression is derived for the ac current...The effect of phase-breaking process on the ac response of a coupled double quantum dot is studied in this paper based on the nonequilibrium Green function formalism. A general expression is derived for the ac current in the presence of electron-phonon interaction. The ac conductance is numerically computed and the results are compared with those in [Anatram M P and Datta S 1995 Phys. Rev. B 51 7632]. Our results reveal that the inter-dot electron tunnelling interplays with that between dots and electron reservoirs, and contributes prominently to the ac current when inter-dot tunnelling coupling is much larger than the tunnelling coupling between dots and electron reservoirs. In addition, the phase-breaking process is found to have a significant effect on the ac transport through the coupled double dot.展开更多
考虑到d 波超导表面时间反演对称态的破缺与粗糙散射效应,在Blonder- Tinkham -Klapw ijk(BTK)理论框架下,通过求解Bogoliubov- de Gennes(BdG)方程,计算正常金属- d 波超导隧道结中的准粒子输运系数、隧道谱和束缚态密度。研究表明:(1...考虑到d 波超导表面时间反演对称态的破缺与粗糙散射效应,在Blonder- Tinkham -Klapw ijk(BTK)理论框架下,通过求解Bogoliubov- de Gennes(BdG)方程,计算正常金属- d 波超导隧道结中的准粒子输运系数、隧道谱和束缚态密度。研究表明:(1)d 波超导表面时间反演对称态的破缺会导致零偏压电导峰位移,位移的程度取决于分解d 波超导表面时间反演对称态中S波分量的强度;(2)粗糙界面散射不仅可压低零偏压电导峰,还会阻碍零偏压电导峰的位移。所得的这些结果能很好地解释目前有关高TC展开更多
文摘The effect of phase-breaking process on the ac response of a coupled double quantum dot is studied in this paper based on the nonequilibrium Green function formalism. A general expression is derived for the ac current in the presence of electron-phonon interaction. The ac conductance is numerically computed and the results are compared with those in [Anatram M P and Datta S 1995 Phys. Rev. B 51 7632]. Our results reveal that the inter-dot electron tunnelling interplays with that between dots and electron reservoirs, and contributes prominently to the ac current when inter-dot tunnelling coupling is much larger than the tunnelling coupling between dots and electron reservoirs. In addition, the phase-breaking process is found to have a significant effect on the ac transport through the coupled double dot.