Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Calorimetric determination of the upper critical fields and anisotropy of NdFeAsO{sub 1-x}F{sub x} single crystals.

Journal Article · · Phys. Rev. B
We present heat-capacity measurements of the upper critical fields of single-crystal NdFeAsO{sub 1?x}F{sub x}. In zero-magnetic field a clear step in the heat capacity is observed at T{sub c} {approx} 47 K. In fields applied perpendicular to the FeAs layers the step broadens significantly whereas for the in-plane orientation the field effects are small. This behavior is reminiscent of the CuO{sub 2}-high-T{sub c} superconductors and is a manifestation of pronounced fluctuation effects. Using an entropy conserving construction we determine the transition temperatures in applied fields and the upper critical-field slopes of {partial_derivative}H{sup c}c2/{partial_derivative}T = -0.72 T/K and {partial_derivative}H{sup ab}c2/{partial_derivative}T = -3.1 T/K. Zero-temperature coherence lengths of {zeta}{sub ab} {approx} 3.7 nm and {zeta}{sub c} {approx} 0.9 nm and a modest superconducting anisotropy of {lambda} {approx} 4 can be deduced in a single-band model.
Research Organization:
Argonne National Laboratory (ANL)
Sponsoring Organization:
SC; Natural Science Foundation of China; Ministry of Science and Technology of China; Chinese Academy of Sciences
DOE Contract Number:
AC02-06CH11357
OSTI ID:
947537
Report Number(s):
ANL/MSD/JA-62351
Journal Information:
Phys. Rev. B, Journal Name: Phys. Rev. B Journal Issue: 2008 Vol. 78; ISSN 1098-0121
Country of Publication:
United States
Language:
ENGLISH

Similar Records

Anisotropic phase diagram and strong coupling effects in Ba{sub 1-x}K{sub x}Fe{sub 2}As{sub 2}.
Journal Article · Wed Dec 31 23:00:00 EST 2008 · Phys. Rev. B · OSTI ID:958539

Specific heat and phase diagrams of single crystal iron pnictide superconductors.
Journal Article · Sat Feb 28 23:00:00 EST 2009 · Physica C · OSTI ID:1006267

Single-vortex pinning and penetration depth in superconducting NdFeAsO1-xFx
Journal Article · Sun Oct 11 20:00:00 EDT 2015 · Physical Review. B, Condensed Matter and Materials Physics · OSTI ID:1227430