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Selective mass enhancement close to the quantum critical point in BaFe

Authors :
V, Grinenko
K, Iida
F, Kurth
D V, Efremov
S-L, Drechsler
I, Cherniavskii
I, Morozov
J, Hänisch
T, Förster
C, Tarantini
J, Jaroszynski
B, Maiorov
M, Jaime
A, Yamamoto
I, Nakamura
R, Fujimoto
T, Hatano
H, Ikuta
R, Hühne
Source :
Scientific Reports
Publication Year :
2017

Abstract

A quantum critical point (QCP) is currently being conjectured for the BaFe2(As1−xPx)2 system at the critical value x c ≈ 0.3. In the proximity of a QCP, all thermodynamic and transport properties are expected to scale with a single characteristic energy, given by the quantum fluctuations. Such a universal behavior has not, however, been found in the superconducting upper critical field H c2. Here we report H c2 data for epitaxial thin films extracted from the electrical resistance measured in very high magnetic fields up to 67 Tesla. Using a multi-band analysis we find that H c2 is sensitive to the QCP, implying a significant charge carrier effective mass enhancement at the doping-induced QCP that is essentially band-dependent. Our results point to two qualitatively different groups of electrons in BaFe2(As1−xPx)2. The first one (possibly associated to hot spots or whole Fermi sheets) has a strong mass enhancement at the QCP, and the second one is insensitive to the QCP. The observed duality could also be present in many other quantum critical systems.

Details

ISSN :
20452322
Volume :
7
Issue :
1
Database :
OpenAIRE
Journal :
Scientific reports
Accession number :
edsair.pmid..........72d22b1a0d6b614c941bf3bc3c9ce998