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Effects of the spatial extension of the edge channels on the interference pattern of a helical Josephson junction

Zitieren Sie bitte immer diese URN: urn:nbn:de:bvb:20-opus-304846
  • Josephson junctions (JJs) in the presence of a magnetic field exhibit qualitatively different interference patterns depending on the spatial distribution of the supercurrent through the junction. In JJs based on two-dimensional topological insulators (2DTIs), the electrons/holes forming a Cooper pair (CP) can either propagate along the same edge or be split into the two edges. The former leads to a SQUID-like interference pattern, with the superconducting flux quantum ϕ\(_0\) (where ϕ\(_0\)=h/2e) as a fundamental period. If CPs’ splitting isJosephson junctions (JJs) in the presence of a magnetic field exhibit qualitatively different interference patterns depending on the spatial distribution of the supercurrent through the junction. In JJs based on two-dimensional topological insulators (2DTIs), the electrons/holes forming a Cooper pair (CP) can either propagate along the same edge or be split into the two edges. The former leads to a SQUID-like interference pattern, with the superconducting flux quantum ϕ\(_0\) (where ϕ\(_0\)=h/2e) as a fundamental period. If CPs’ splitting is additionally included, the resultant periodicity doubles. Since the edge states are typically considered to be strongly localized, the critical current does not decay as a function of the magnetic field. The present paper goes beyond this approach and inspects a topological JJ in the tunneling regime featuring extended edge states. It is here considered the possibility that the two electrons of a CP propagate and explore the junction independently over length scales comparable to the superconducting coherence length. As a consequence of the spatial extension, a decaying pattern with different possible periods is obtained. In particular, it is shown that, if crossed Andreev reflections (CARs) are dominant and the edge states overlap, the resulting interference pattern features oscillations whose periodicity approaches 2ϕ\(_0\).zeige mehrzeige weniger

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Metadaten
Autor(en): Lucia Vigliotti, Alessio Calzona, Niccolò Traverso Ziani, F. Sebastian Bergeret, Maura Sassetti, Björn Trauzettel
URN:urn:nbn:de:bvb:20-opus-304846
Dokumentart:Artikel / Aufsatz in einer Zeitschrift
Institute der Universität:Fakultät für Physik und Astronomie / Institut für Theoretische Physik und Astrophysik
Sprache der Veröffentlichung:Englisch
Titel des übergeordneten Werkes / der Zeitschrift (Englisch):Nanomaterials
ISSN:2079-4991
Erscheinungsjahr:2023
Band / Jahrgang:13
Heft / Ausgabe:3
Aufsatznummer:569
Originalveröffentlichung / Quelle:Nanomaterials (2023) 13:3, 569. https://doi.org/10.3390/nano13030569
DOI:https://doi.org/10.3390/nano13030569
Sonstige beteiligte Institutionen:Würzburg-Dresden Cluster of Excellence ct.qmat
Allgemeine fachliche Zuordnung (DDC-Klassifikation):5 Naturwissenschaften und Mathematik / 53 Physik / 530 Physik
Freie Schlagwort(e):2ϕ\(_0\) periodicity; Josephson junctions; edge states; interference pattern; topological insulators
Datum der Freischaltung:01.02.2024
Datum der Erstveröffentlichung:31.01.2023
Lizenz (Deutsch):License LogoCC BY: Creative-Commons-Lizenz: Namensnennung 4.0 International