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Selective Area Grown Semiconductor-Superconductor Hybrids: A Basis for Topological Networks

Mesoscale and Nanoscale Physics 2018-10-08 v3 Materials Science Superconductivity

Abstract

We introduce selective area grown hybrid InAs/Al nanowires based on molecular beam epitaxy, allowing arbitrary semiconductor-superconductor networks containing loops and branches. Transport reveals a hard induced gap and unpoisoned 2e-periodic Coulomb blockade, with temperature dependent 1e features in agreement with theory. Coulomb peak spacing in parallel magnetic field displays overshoot, indicating an oscillating discrete near-zero subgap state consistent with device length. Finally, we investigate a loop network, finding strong spin-orbit coupling and a coherence length of several microns. These results demonstrate the potential of this platform for scalable topological networks among other applications.

Keywords

Cite

@article{arxiv.1802.04210,
  title  = {Selective Area Grown Semiconductor-Superconductor Hybrids: A Basis for Topological Networks},
  author = {S. Vaitiekėnas and A. M. Whiticar and M. T. Deng and F. Krizek and J. E. Sestoft and C. J. Palmstrøm and S. Marti-Sanchez and J. Arbiol and P. Krogstrup and L. Casparis and C. M. Marcus},
  journal= {arXiv preprint arXiv:1802.04210},
  year   = {2018}
}

Comments

NBI QDEV 2018