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Orientation of point nodes and nonunitary triplet pairing tuned by the easy-axis magnetization in UTe2
Authors
Dai Aoki
Yoshiya Homma
+7Â more
Fuminori Honda
Shunichiro Kittaka
Dexin Li
Kazushige Machida
Ai Nakamura
Toshiro Sakakibara
Yusei Shimizu
Publication date
1 July 2020
Publisher
'American Physical Society (APS)'
Doi
View
on
arXiv
Abstract
The gap structure of a novel uranium-based superconductor UTe
2
_2
2
​
, situated in the vicinity of ferromagnetic quantum criticality, has been investigated via specific-heat
C
(
T
,
H
,
Ω
)
C(T,H,\Omega)
C
(
T
,
H
,
Ω
)
measurements in various field orientations. Its angular
Ω
(
Ï•
,
θ
)
\Omega(\phi,\theta)
Ω
(
Ï•
,
θ
)
variation shows a characteristic shoulder anomaly with a local minimum in
H
∥
a
H \parallel a
H
∥
a
at moderate fields rotated within the
a
b
ab
ab
and
a
c
ac
a
c
planes. Based on the theoretical calculations, these features can be attributed to the presence of point nodes in the superconducting gap along the
a
a
a
direction. Under the field orientation along the easy-magnetization
a
a
a
axis, an unusual temperature dependence of the upper critical field at low fields together with a convex downward curvature in
C
(
H
)
C(H)
C
(
H
)
were observed. These anomalous behaviors can be explained on the basis of a nonunitary triplet state model with equal-spin pairing whose
T
c
T_{\rm c}
T
c
​
is tuned by the magnetization along the
a
a
a
axis. From these results, the gap symmetry of UTe
2
_2
2
​
is most likely described by a vector order parameter of
d
(
k
)
=
(
b
+
i
c
)
(
k
b
+
i
k
c
)
d(k)=(b + ic)(k_b + ik_c)
d
(
k
)
=
(
b
+
i
c
)
(
k
b
​
+
i
k
c
​
)
.Comment: 6 pages, 4 figures (main text) + 7 pages, 5 figures (Supplementary Material), accepted for publication in Phys. Rev. Researc
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Last time updated on 14/08/2024