Published February 1, 1973 | Version v1
Journal article

Anisotropic superconductivity in layer compounds

Description

Measurements of the angular dependence of the upper critical field Hc2 in the transition metal dichalcogenides TaS₂, TaS₂-(pyridine), TaS₁Se₁, TaS₁Se₁-(pyridine), TaS1.2Se0.8, and TaS0.8Se1.2 have been made in magnetic fields up to 150 kOe. The observed angular dependence has been compared to simple theoretical models in order to estimate the anisotropy of the coherence length ξ in these materials. The values of the ξξ calculated from the data were 20 for TaS₂-(pyridine) and approximately 7 for the TaS₂, TaS₁Se₁, and TaS₁Se₁-(pyridine). The alloys with different ratios of sulfur and selenium showed no major change in behavior as compared to TaS₁Se₁. The results are also discussed in relation to a generalized effective-mass model of anisotropic electronic conduction. The resistive transitions in the intercalated materials for field orientations less than 10° from the parallel orientation are extremely broad and also exhibit unusual structure connected with enhanced flux-flow resistance. The magnetoresistance behavior in the normal state of the pure and intercalated layer compounds has also been measured and the changes in anisotropy due to intercalation are discussed.

Additional details

Additional titles

Augmented title (English)
TaS_2--(pyridine), TaS_1Se_1, TaS_1Se_1--(pyridine), TaS/sub1.2/Se/sub0.8/, and TaS/sub0.8/Se/sub1.2/, anisotropy of coherence length, generalized effective-mass model

Identifiers

Publishing Information

Journal Title
Physical Review B
Journal Volume
7
Journal Issue
3
Series
Phys. Rev., B.
Journal Page Range
991-1001
ISSN
0556-2805

Optional Information

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