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Parity transitions in the superconducting ground state of hybrid InSb-Al Coulomb islands

Authors :
Shen, Jie
Heedt, Sebastian
Borsoi, Francesco
Van Heck, Bernard
Gazibegovic, Sasa
Veld, Roy L. M. Op het
Car, Diana
Logan, John A.
Pendharkar, Mihir
Ramakers, Senja J. J.
Wang, Guanzhong
Xu, Di
Bouman, Daniel
Geresdi, Attila
Palmstrom, Chris J.
Bakkers, Erik P. A. M.
Kouwenhoven, Leo P.
Source :
Nature Communicationsvolume 9, Article number: 4801 (2018)
Publication Year :
2018

Abstract

The number of electrons in small metallic or semiconducting islands is quantized. When tunnelling is enabled via opaque barriers this number can change by an integer. In superconductors the addition is in units of two electron charges (2e), reflecting that the Cooper pair condensate must have an even parity. This ground state (GS) is foundational for all superconducting qubit devices. Here, we study a hybrid superconducting-semiconducting island and find three typical GS evolutions in a parallel magnetic field: a robust 2e-periodic even-parity GS, a transition to a 2e-periodic odd-parity GS,and a transition from a 2e- to a 1e-periodic GS. The 2e-periodic odd-parity GS persistent in gate-voltage occurs when a spin-resolved subgap state crosses zero energy. For our 1e-periodic GSs we explicitly show the origin being a single zero-energy state gapped from the continuum, i.e. compatible with an Andreev bound states stabilized at zero energy or the presence of Majorana zero modes.

Details

Database :
arXiv
Journal :
Nature Communicationsvolume 9, Article number: 4801 (2018)
Publication Type :
Report
Accession number :
edsarx.1804.08405
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s41467-018-07279-7