Combined Zeeman and orbital effect on the Josephson effect in rippled graphene
Eirik Holm Fyhn, Morten Amundsen, Ayelet Zalic, Tom Dvir, Hadar Steinberg, Jacob Linder
DOI 10.1103/PhysRevB.102.024510 · Physical Review B
Active bibliographic source — not scientific approval
Bibliographic access preserves source history; it does not approve extracted materials or validate reported claims. Review warnings on each occurrence separately.
Abstract
The two-dimensional nature of graphene Josephson junctions offers the possibility of creating effective superconductor-ferromagnet-superconductor junctions with tunable Zeeman splitting caused by an in-plane magnetic field. Such junctions would be able to alternate between a conventional superconducting ground state and a ground state with an intrinsic phase difference, making them controllable 0-π Josephson junctions. However, in addition to the Zeeman splitting, an in-plane magnetic field will in general also produce an orbital effect because of height variations in graphene, colloquially known as ripples. Both the Zeeman and orbital effect will thus affect the critical current, so to be able to identify 0-π transitions it is necessary to understand their combined effect. From both analytical and numerical solutions of the Usadel equation we find that ripples can in fact produce a current response similar to that which is characteristic of a 0-π transition. Hence, additional analysis is required in order to reveal the presence of a 0-π transition caused by spin splitting in graphene with ripples. We provide a closed form analytical expression for the critical current in the presence of exchange field and ripple effects as well as an expression for the scaling of critical current zeros with junction parameters.
Source-reported materials — not catalogue approval
| Formula | Reported Tc (K) | Pressure (GPa) | Type |
|---|---|---|---|
| NbSe2 Archive — visibility unverified Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula. | — | Pressure not reported | unknown |
Similar papers
Josephson Diode Effect Induced by Valley Polarization in Twisted Bilayer Graphene
similarity 0.95Jin-Xin Hu et al.
Source status unknown — claims are unverified
Josephson diode effect in unconventional p-wave magnet/superconductor Josephson junctions
similarity 0.93Zhe Yang & Zhi Ping Niu
Source status unknown — claims are unverified
Josephson effect of pseudospin-1 fermions in a dice lattice based superconducting junction
similarity 0.93Zixuan Ding et al.
Source status unknown — claims are unverified
Field-free Josephson diode effect in an Ising-superconductor/altermagnet/Ising-superconductor Josephson junction
similarity 0.93Arindam Boruah et al.
Source status unknown — claims are unverified
Tuning monolayer superconductivity in twisted NbSe2 graphene heterostructures
similarity 0.93Shun Asano & Youichi Yanase
Source status unknown — claims are unverified
Light-modulated Andreev effects in graphene-based superconducting junctions
similarity 0.93Miao Yu et al.
Source status unknown — claims are unverified