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      Transmission phase read-out of a large quantum dot in a nanowire interferometer

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          Abstract

          Detecting the transmission phase of a quantum dot via interferometry can reveal the symmetry of the orbitals and details of electron transport. Crucially, interferometry will enable the read-out of topological qubits based on one-dimensional nanowires. However, measuring the transmission phase of a quantum dot in a nanowire has not yet been established. Here, we exploit recent breakthroughs in the growth of one-dimensional networks and demonstrate interferometric read-out in a nanowire-based architecture. In our two-path interferometer, we define a quantum dot in one branch and use the other path as a reference arm. We observe Fano resonances stemming from the interference between electrons that travel through the reference arm and undergo resonant tunnelling in the quantum dot. Between consecutive Fano peaks, the transmission phase exhibits phase lapses that are affected by the presence of multiple trajectories in the interferometer. These results provide critical insights for the design of future topological qubits.

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          Author and article information

          Journal
          25 June 2020
          Article
          2006.14645
          7f2e3436-bd8b-4af0-a318-31b9d20aa0b8

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          to be published in Nature Communications
          cond-mat.mes-hall

          Nanophysics
          Nanophysics

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