English

High transparency Bi2Se3 topological insulator nanoribbon Josephson junctions with low resistive noise properties

Superconductivity 2020-01-08 v2

Abstract

Bi2_2Se3_3 nanoribbons, grown by catalyst-free Physical Vapour Deposition, have been used to fabricate high quality Josephson junctions with Al superconducting electrodes. The conductance spectra (dI/dV) of the junctions show clear dip-peak structures characteristic of multiple Andreev reflections. The temperature dependence of the dip-peak features reveals a highly transparent Al/Bi2_2Se3_3 topological insulator nanoribbon interface and Josephson junction barrier. This is supported by the high values of the Bi2_2Se3_3 induced gap and of Ic_cRn_n (Ic_c critical current, Rn_n normal resistance of the junction) product both of the order of 160 μ\mueV, a value close to the Al gap. The devices present an extremely low relative resistance noise below 1×\times1012^{-12} μ\mum2^2/Hz comparable to the best Al tunnel junctions, which indicates a high stability in the transmission coefficients of transport channels. The ideal Al/Bi2_2Se3_3 interface properties, perfect transparency for Cooper pair transport in conjunction with low resistive noise make these junctions a suitable platform for further studies of the induced topological superconductivity and Majorana bound states physics.

Keywords

Cite

@article{arxiv.1910.00280,
  title  = {High transparency Bi2Se3 topological insulator nanoribbon Josephson junctions with low resistive noise properties},
  author = {Gunta Kunakova and Thilo Bauch and Edoardo Trabaldo and Jana Andzane and Donats Erts and Floriana Lombardi},
  journal= {arXiv preprint arXiv:1910.00280},
  year   = {2020}
}

Comments

The following article has been accepted by Applied Physics Letters