Inductive Response of Oriented UPt sub 3 in the Superconducting State

The inductive response of single crystals of UPt sub 3 have been studied from 1K-70 mK using mutual inductance techniques to measure chi exp ' and chi exp " at 31.7 and 317 Hz and tunnel diode resonant methods at 3 and 16 MHz, for the excitation fields parallel to the symmetry axis of the...

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Veröffentlicht in:Physical review. B, Condensed matter Condensed matter, 1992-05, Vol.45 (17), p.10151-10154
Hauptverfasser: Signore, P J C, Koster, J P, Knetsch, E A, van Woerkens, CMCM, Meisel, M W, Brown, S E, Fisk, Z
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container_end_page 10154
container_issue 17
container_start_page 10151
container_title Physical review. B, Condensed matter
container_volume 45
creator Signore, P J C
Koster, J P
Knetsch, E A
van Woerkens, CMCM
Meisel, M W
Brown, S E
Fisk, Z
description The inductive response of single crystals of UPt sub 3 have been studied from 1K-70 mK using mutual inductance techniques to measure chi exp ' and chi exp " at 31.7 and 317 Hz and tunnel diode resonant methods at 3 and 16 MHz, for the excitation fields parallel to the symmetry axis of the crystal. A double bump in the chi exp " measurements is clearly distinguishable and is consistent with the H = 0 phase diagrams of other workers. The temperature dependence of the magnetic penetration depth has been extracted from the measurements which indicate that the low-frequency results are linear for T/T sub c < 0.5, while the high-frequency data indicate a power-law dependence close to T exp 2 .
doi_str_mv 10.1103/PhysRevB.45.10151
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source American Physical Society Journals
subjects ACTINIDE COMPOUNDS
CRYSTALS
ELECTRIC CONDUCTIVITY
ELECTRICAL PROPERTIES
MATERIALS SCIENCE
MONOCRYSTALS
PENETRATION DEPTH
PHYSICAL PROPERTIES
PLATINUM COMPOUNDS
SUPERCONDUCTIVITY
TEMPERATURE DEPENDENCE
TEMPERATURE RANGE
TEMPERATURE RANGE 0000-0013 K
TRANSITION ELEMENT COMPOUNDS 360107 -- Metals & Alloys-- Superconducting Properties-- (1992-)
URANIUM COMPOUNDS
title Inductive Response of Oriented UPt sub 3 in the Superconducting State
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