S. Harm
University of Kiel
14 Papers
12 Citations
S. Harm is an academic researcher from University of Kiel. The author has contributed to research in topics: Brillouin zone & Electronic structure. The author has an hindex of 5, co-authored 11 publications.
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Papers
Electronic structure and Fermi surface of Bi2Sr2CaCu2O8
TL;DR: In this article, angle-resolved photoemission spectroscopy of high angular and energy resolution was applied to measure the electronic structure of single crystals of Bi2Sr2CaCu2O8 near the Fermi energy.
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High-energy spectroscopy studies of high-Tc superconductors
J. Fink,N. Nücker,M. Alexander,H. Romberg,Martin Knupfer,M. Merkel,P. Adelmann,Ralph Claessen,G. Mante,T. Buslaps,S. Harm,R. Manzke,Michael Skibowski +12 more
TL;DR: In this paper, the electronic structure of high-Tc superconductors and related compounds is investigated and electron energy loss and direct and inverse photo-emission studies are reported.
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Fermi-liquid-type spectral function and angle resolved photoelectron spectra of the Ti-3dz2-band of TiTe2
TL;DR: In this paper, the authors used a Taylor expansion for the self-energy used by Claessen et al. [I] for a system whose low energy properties are those of a normal metal and found a dependence of the dispersion of the Ti-3d,a-derived band on the stoichiometry of the samples.
21
Effect of Particle Size and Pressure on the Transport Properties of the Fast Ion Conductor t‐Li7SiPS8
Christian Schneider,Christoph F. Schmidt,A. Lecuona Neumann,M. Clausnitzer,Marcel Sadowski,S. Harm,Christoph Meier,Timo Danner,Karsten Albe,Arnulf Latz,Wolfgang A. Wall,Bettina V. Lotsch +11 more
TL;DR: In this paper , the particle size dependent compression mechanics and ionic conductivity of the mechanically soft thiophosphate solid electrolyte tetragonal Li7SiPS8 (t−LiSiPS) under pressure are investigated.
17
Electronic Structure of the CdTe(100)-(1×1) Surface
K. U. Gawlik,J. Brugmann,S. Harm,C. Janowitz,Recardo Manzke,Michael Skibowski,C. Solterbeck,W. Schattke,B.A. Orlowski +8 more
TL;DR: In this paper, an angle-resolved photoemission of the CdTe(100)-(1x1) surface was investigated by angle-resolution photo emission and the experimental band structure E(k || ) was determined along high-symmetry lines of the surface Brillouin zone by measuring energy-distribution curves of photoelectrons.