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Differential-thermal analysis around and below the critical temperature Tc of various low-Tc superconductors: A comparative study


Reibelt, M; Schilling, A; Canfield, P C; Ravikumar, G; Berger, H (2008). Differential-thermal analysis around and below the critical temperature Tc of various low-Tc superconductors: A comparative study. Physica C: Superconductivity, 468(22):2254-2266.

Abstract

We present specific-heat data on the type-II superconductors V3Si, LuNi2B2C and NbSe2 which were acquired with a low-temperature thermal analysis (DTA) technique. We compare our data with available literature data on these superconductors. In the first part we show that the DTA technique allows for fast measurements while providing a very high resolution on the temperature scale. Sharp features in the specific heat such as at the one at the transition to superconductivity are resolved virtually without instrumental broadening. In the second part we investigate the magnetic-field dependence of the specific heats of V3Si and LuNi2B2C at a fixed temperature T = 7.5 K to demonstrate that DTA techniques also allow for sufficiently precise measurements of absolute values of cp even in the absence of a sharp phase transition. The corresponding data for V3Si and LuNi2B2C are briefly discussed.

Abstract

We present specific-heat data on the type-II superconductors V3Si, LuNi2B2C and NbSe2 which were acquired with a low-temperature thermal analysis (DTA) technique. We compare our data with available literature data on these superconductors. In the first part we show that the DTA technique allows for fast measurements while providing a very high resolution on the temperature scale. Sharp features in the specific heat such as at the one at the transition to superconductivity are resolved virtually without instrumental broadening. In the second part we investigate the magnetic-field dependence of the specific heats of V3Si and LuNi2B2C at a fixed temperature T = 7.5 K to demonstrate that DTA techniques also allow for sufficiently precise measurements of absolute values of cp even in the absence of a sharp phase transition. The corresponding data for V3Si and LuNi2B2C are briefly discussed.

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Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Physics Institute
Dewey Decimal Classification:530 Physics
Scopus Subject Areas:Physical Sciences > Electronic, Optical and Magnetic Materials
Physical Sciences > Condensed Matter Physics
Physical Sciences > Energy Engineering and Power Technology
Physical Sciences > Electrical and Electronic Engineering
Language:English
Date:15 November 2008
Deposited On:17 Feb 2009 13:58
Last Modified:25 Jun 2022 21:38
Publisher:Elsevier
ISSN:0921-4534
OA Status:Green
Publisher DOI:https://doi.org/10.1016/j.physc.2008.07.005
  • Content: Accepted Version