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THE COULOMB BLOCKADE IN COUPLED QUANTUM DOTS

机译:耦合量子点中的库仑封锁

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Individual quantum dots are often referred to as ''artificial atoms.'' Two tunnel-coupled quantum dots can be considered an ''artificial molecule.'' Low-temperature measurements were made on a series double quantum dot with adjustable interdot tunnel conductance that was fabricated in a gallium arsenide-aluminum gallium arsenide heterostructure, The Coulomb blockade was used to determine the ground-state charge configuration within the ''molecule'' as a function of the total charge on the double dot and the interdot polarization induced by electrostatic gates. As the tunnel conductance between the two dots is increased from near zero to 2e (2)/h (where e is the electron charge and h is Planck's constant), the measured conductance peaks of the double dot exhibit pronounced changes in agreement with many-body theory.
机译:单个量子点通常被称为“人工原子”。两个与隧道耦合的量子点可以被视为“人工分子”。低温测量是在具有可调的点间隧道电导的一系列双量子点上进行的,用砷化镓-砷化镓铝异质结构制造,使用库仑阻挡来确定“分子”内的基态电荷构型,其是双点上的总电荷和静电引起的点间极化的函数盖茨。随着两个点之间的隧道电导从接近零增加到2e(2)/ h(其中e是电子电荷,h是普朗克常数),测得的双点电导峰表现出明显的变化,与许多-身体理论。

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