Josephson effect in a multiorbital model for Sr2RuO4
Kohei Kawai
1
,
Keiji Yada
2
,
Yukio TANAKA
2
,
YASUHIRO ASANO
3
,
Alexander A Golubov
4
,
Satoshi Kashiwaya
5
Publication type: Journal Article
Publication date: 2017-05-24
scimago Q1
wos Q2
SJR: 1.303
CiteScore: 6.2
Impact factor: 3.7
ISSN: 24699950, 24699969, 10980121, 1550235X
Abstract
We study Josephson current between s-wave/spin-triplet superconductor junctions by taking into account details of band structures in Sr$_{2}$RuO$_{4}$ such as three conduction bands, spin-orbit interaction in the bulk and that at the interface. We assume five superconducting order parameters in Sr$_{2}$RuO$_{4}$: a chiral p-wave symmetry and four helical p-wave symmetries. We calculate current-phase relationship $I(\varphi)$ in these junctions, where $\varphi$ is the macroscopic phase difference between two superconductors. The results for a chiral p-wave pairing symmetry show that $\cos(\varphi)$ term appears in the current-phase relation due to time-reversal symmetry (TRS) breaking. On the other hand, $\cos(\varphi)$ term is absent in the helical pairing states which preserve the TRS. We also study the dependence of maximum Josephson current $I_c$ on an external magnetic flux $\Phi$ in a corner junction. The calculated results of $I_c(\Phi)$ show a relation $I_{c}(\Phi) \neq I_{c}(-\Phi)$ in a chiral state and $I_{c}(\Phi)=I_{c}(-\Phi)$ in a helical state. We calculate $I_c(\Phi)$ in a corner and a symmetric SQUIDs geometry. In a symmetric SQUID geometry, the relation $I_{c}(\Phi)=I_{c}(-\Phi)$ is satisfied for all the pairing states and it is impossible to distinguish chiral state from helical one. On the other hand, results for a corner SQUID always show $I_{c}(\Phi) \neq I_{c}(-\Phi)$ and $I_{c}(\Phi)=I_{c}(-\Phi)$ for a chiral and a helical states, respectively. Experimental tests of these relations in a corner junctions and SQUIDs may serve as a tool for unambiguous determination of the pairing symmetry in Sr$_{2}$RuO$_{4}$.
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16
Total citations:
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Citations from 2024:
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(18%)
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Kawai K. et al. Josephson effect in a multiorbital model for Sr2RuO4 // Physical Review B. 2017. Vol. 95. No. 17. 174518
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Kawai K., Yada K., TANAKA Y., ASANO Y., Golubov A. A., Golubov A. A., Kashiwaya S. Josephson effect in a multiorbital model for Sr2RuO4 // Physical Review B. 2017. Vol. 95. No. 17. 174518
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TY - JOUR
DO - 10.1103/physrevb.95.174518
UR - https://doi.org/10.1103/physrevb.95.174518
TI - Josephson effect in a multiorbital model for Sr2RuO4
T2 - Physical Review B
AU - Kawai, Kohei
AU - Yada, Keiji
AU - TANAKA, Yukio
AU - ASANO, YASUHIRO
AU - Golubov, Alexander A
AU - Golubov, Alexander A.
AU - Kashiwaya, Satoshi
PY - 2017
DA - 2017/05/24
PB - American Physical Society (APS)
IS - 17
VL - 95
SN - 2469-9950
SN - 2469-9969
SN - 1098-0121
SN - 1550-235X
ER -
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@article{2017_Kawai,
author = {Kohei Kawai and Keiji Yada and Yukio TANAKA and YASUHIRO ASANO and Alexander A Golubov and Alexander A. Golubov and Satoshi Kashiwaya},
title = {Josephson effect in a multiorbital model for Sr2RuO4},
journal = {Physical Review B},
year = {2017},
volume = {95},
publisher = {American Physical Society (APS)},
month = {may},
url = {https://doi.org/10.1103/physrevb.95.174518},
number = {17},
pages = {174518},
doi = {10.1103/physrevb.95.174518}
}
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