TY - JOUR
T1 - Unconventional superconductivity and non-Fermi liquid behaviour of ε-iron at high pressure
AU - Holmes, A.T.
AU - Jaccard, D.
AU - Behr, G.
AU - Inada, Y.
AU - Onuki, Y.
PY - 2004/4/14
Y1 - 2004/4/14
N2 - We report further resistive measurements under pressure of samples of iron from multiple sources. The normal state resistivity of ε-iron varied as ρ + AT at low temperature over the entire superconducting pressure domain. The superconductivity could be destroyed by mechanical work, and was restored by annealing, demonstrating sensitivity to the residual resistivity ρ. There is a strong correlation between the ρ and A coefficients and the superconducting critical temperature T. The critical field B corresponding to the maximum T was found to be 0.73 T, implying a coherence length of about 20 nm, i.e. slightly shorter than the electronic mean free path. Within the partial resistive transition there was a significant current dependence, with V(I) = a(I -I) + bI, and a ≫ b, possibly indicating flux-flow resistivity, even in the absence of an externally applied magnetic field.
AB - We report further resistive measurements under pressure of samples of iron from multiple sources. The normal state resistivity of ε-iron varied as ρ + AT at low temperature over the entire superconducting pressure domain. The superconductivity could be destroyed by mechanical work, and was restored by annealing, demonstrating sensitivity to the residual resistivity ρ. There is a strong correlation between the ρ and A coefficients and the superconducting critical temperature T. The critical field B corresponding to the maximum T was found to be 0.73 T, implying a coherence length of about 20 nm, i.e. slightly shorter than the electronic mean free path. Within the partial resistive transition there was a significant current dependence, with V(I) = a(I -I) + bI, and a ≫ b, possibly indicating flux-flow resistivity, even in the absence of an externally applied magnetic field.
U2 - 10.1088/0953-8984/16/14/021
DO - 10.1088/0953-8984/16/14/021
M3 - Article
AN - SCOPUS:2142819437
SN - 0953-8984
VL - 16
JO - Journal of Physics: Condensed Matter
JF - Journal of Physics: Condensed Matter
IS - 14
ER -