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Non-universal transmission phase behaviour of a large quantum dot

机译:大量子点的非通用传输相位行为

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The electron wave function experiences a phase modification at coherent transmission through a quantum dot. This transmission phase undergoes a characteristic shift of π when scanning through a Coulomb blockade resonance. Between successive resonances either a transmission phase lapse of π or a phase plateau is theoretically expected to occur depending on the parity of quantum dot states. Despite considerable experimental effort, this transmission phase behaviour has remained elusive for a large quantum dot. Here we report on transmission phase measurements across such a large quantum dot hosting hundreds of electrons. Scanning the transmission phase along 14 successive resonances with an original two-path interferometer, we observe both phase lapses and plateaus. We demonstrate that quantum dot deformation alters the sequence of phase lapses and plateaus via parity modifications of the involved quantum dot states. Our findings set a milestone towards an comprehensive understanding of the transmission phase of quantum dots.
机译:电子波函数在通过量子点的相干传输中经历相位修改。当通过库仑阻塞共振进行扫描时,该传输阶段经历π的特征位移。在连续谐振之间,根据量子点状态的奇偶性,理论上预计会发生π的传输相位滞后或相位平稳。尽管付出了巨大的实验努力,但对于大量子点而言,这种传输阶段的行为仍然难以捉摸。在这里,我们报告了在容纳数百个电子的大量子点上的传输相位测量结果。使用原始的两路径干涉仪扫描沿14个连续共振的传输相位,我们观察到相位差和平稳期。我们证明量子点变形通过所涉及的量子点状态的奇偶性修改来改变相间隔和平稳的顺序。我们的发现为全面理解量子点的传输阶段奠定了里程碑。

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