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APS -APS March Meeting 2017 - Event - Single electron capacitance spectroscopy of ultra clean quantum dots in high magnetic field

机译:APS -APS 2017年3月会议-活动-强磁场中超干净量子点的单电子电容光谱

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Single quantum dots are mesoscopic semiconducting islands with a tunable occupation number. Interestingly, at low density and magnetic field, they are best described as artificial atoms with weakly interacting electrons, while at high density and field they should show the mesoscopic analog of bulk collective behavior such as the fractional quantum Hall effect. However observing collective behavior in quantum dots has been non trivial due to the extreme difficulty fabricating sufficiently high quality devices. We study the electron addition spectroscopy of ultra clean quantum dots using a capacitance technique. We measure the magnetic field dependence of the ground state energy from a completely depopulated dot, up to large electron number. We find both the expected non-interacting Fock-Darwin like behavior, as well as deviations suggestive of more novel physics.
机译:单量子点是具有可调占有数的介观半导体岛。有趣的是,在低密度和磁场下,它们最好被描述为具有弱相互作用电子的人造原子,而在高密度和磁场下,它们应显示出整体集体行为的介观类似物,例如分数量子霍尔效应。然而,由于制造足够高质量的器件极其困难,因此在量子点中观察集体行为并非易事。我们使用电容技术研究了超干净量子点的电子加成光谱。我们从一个完全消失的点(直至大电子数)测量基态能量的磁场依赖性。我们发现预期的非相互作用的Fock-Darwin行为,以及表明更新颖的物理学的偏差。

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