C
Ch. Paul
Researcher at Vienna University of Technology
Publications - 27
Citations - 1624
Ch. Paul is an academic researcher from Vienna University of Technology. The author has contributed to research in topics: Seebeck coefficient & Magnetic susceptibility. The author has an hindex of 14, co-authored 27 publications receiving 1521 citations.
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Journal ArticleDOI
Heavy fermion superconductivity and magnetic order in noncentrosymmetric CePt3Si.
E. Bauer,Gerfried Hilscher,Herwig Michor,Ch. Paul,Ernst-Wilhelm Scheidt,Alexander Gribanov,Yu. D. Seropegin,Henri Noël,Manfred Sigrist,Peter Rogl +9 more
TL;DR: CePt3Si is a novel heavy fermion superconductor, crystallizing in the CePt 3B structure as a tetragonally distorted low symmetry variant of the AuCu3 structure type.
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Thermoelectricity of clathrate I Si and Ge phases
Ya. Mudryk,Peter Rogl,Ch. Paul,St. Berger,Ernst Bauer,Gerfried Hilscher,Claude Godart,Claude Godart,Henri Noël +8 more
TL;DR: In this paper, the authors investigated the properties of type I clathrate Si and Ge compounds with Ba partially substituted by rare earth atoms and derived the highest Seebeck coefficient for Ba8Al16Ge30, S = −75μV K−1.
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Crystal field effects and thermoelectric properties of PrFe 4 Sb 12 skutterudite
E. Bauer,St. Berger,Ch. Paul,M. Della Mea,Gerfried Hilscher,Herwig Michor,Michael Reissner,Walter Steiner,A. Grytsiv,Peter Rogl,Ernst-Wilhelm Scheidt +10 more
TL;DR: In this paper, transport and magnetic properties are reported for ternary skutterudites, and a significant value of a nuclear Schottky contribution is derived below about 1 K, primarily related to the nuclear spin.
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Thermal conductivity of superconducting MgB2
E. Bauer,Ch. Paul,St. Berger,Satya N. Majumdar,Satya N. Majumdar,Herwig Michor,Mauro Giovannini,Adriana Saccone,Antonio Bianconi +8 more
TL;DR: In this paper, the thermal conductivity of superconducting MgB2 was studied in both the normal state region and the super-conducting region, and it was shown that electron scattering on static imperfections dominates.
Journal ArticleDOI
Structure and physical properties of the thermoelectric skutterudites Eu y Fe 4- x Co x Sb 12
A. Grytsiv,Peter Rogl,St. Berger,Ch. Paul,E. Bauer,Claude Godart,Claude Godart,B. Ni,Mohsen M. Abd-Elmeguid,Adriana Saccone,Riccardo Ferro,Dariusz Kaczorowski +11 more
TL;DR: In this paper, the authors synthesize and crystallize compounds from the partially filled skutterudite-type structure of a solid solution and find that the magnetic transition temperature decreases from 84 K for the solid solution to 8 K for Fe/Co.