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pro vyhledávání: '"S. Legner"'
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Publikováno v:
CASE
The progress of digitalization enables new potentials to supply chain management by available data and analysis methods. This paper focuses on the master production planning for a midterm time horizon in a volatile, diverse and capacity constrained e
Autor:
C. Dürr, Jörg Fink, S. Legner, Martin Knupfer, M. S. Golden, Andreas Koitzsch, Zhiwei Hu, Sergey Borisenko
Publikováno v:
Journal of electron spectroscopy and related phenomena, 117, 203-222. Elsevier
We report studies of the electronic structure and elementary excitations of doped and undoped cuprate chains, ladders and planes. Using high energy spectroscopies such as x-ray absorption, core level photoemission and angle resolved photoemission spe
Autor:
Thomas Pichler, S. Legner, Michael R. C. Hunt, C. Grazioli, Rolf Follath, Hisanori Shinohara, M. Knupfer, Mark S. Golden, Petra Rudolf, Paul A. Brühwiler, J. Fink, Zhiwei Hu, M. Inakuma, Ch. Jung, F. M. F. de Groot, L. Kjeldgaard
Publikováno v:
Physical Review B. 62:13196-13201
The electronic structure and the valency of the Sc ions in the endohedral dimetallofullerene ${\mathrm{Sc}}_{2}@{\mathrm{C}}_{84}$ with ${D}_{2d}$ symmetry are probed using high-energy spectroscopy. Comparison of the Sc $2\stackrel{\ensuremath{\right
Autor:
G. Reichardt, C. Dürr, Christoph Janowitz, Helmuth Berger, Jörg Fink, T. Pichler, S. Legner, Sergey Borisenko, S. Abell, M. S. Golden, R. Müller, Martin Knupfer, G. Yang
Publikováno v:
Physical Review B. 62:154-157
We address the question as to whether the topology of the normal-state Fermi surface of ${\mathrm{Bi}}_{2}{\mathrm{Sr}}_{2}{\mathrm{CaCu}}_{2}{\mathrm{O}}_{8+\ensuremath{\delta}}$---as seen in angle-resolved photoemission---depends on the photon ener
Autor:
Thomas Pichler, Sergey Borisenko, J. Fink, S. Abell, S. Legner, Martin Knupfer, Mark S. Golden, G. Yang, Helmuth Berger, C. Dürr
Publikováno v:
Physical Review Letters. 84:4453-4456
On the basis of angle-scanned photoemission data recorded using unpolarized radiation, with high $(E,\mathbf{k})$ resolution, and an extremely dense sampling of $\mathbf{k}$ space, we resolve the current controversy regarding the normal state Fermi s
Autor:
C. Duerr, Thomas Pichler, S. Legner, Mark S. Golden, J. Fink, G. Reichardt, Sergey Borisenko, G. Yang, S. Abell, M. Knupfer, Christoph Janowitz, R. Mueller
Publikováno v:
Physica C, 341-348, 2099-2102. Elsevier
We present a study of the topology of the normal state Fermi surface (FS) of the high Tc superconductor Bi2212 using angle-resolved photoemission. We present FS mapping experiments, recorded using unpolarised radiation with high (E,k) resolution, and
Publikováno v:
Advances in Solid State Physics ISBN: 9783540415763
We illustrate the effectiveness of high resolution Fermi surface (FS) mapping of the Bi-2212 based materials in the investigation of the electronic structure of the the high temperature superconductors. In particular, the advantages of the simultaneo
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::e7944cac28c6858cafd573e3f5d81cc7
https://doi.org/10.1007/bfb0108389
https://doi.org/10.1007/bfb0108389
Autor:
Stefano Turchini, S. Legner, Ralph Claessen, Martin Knupfer, Mark S. Golden, Claus M. Schneider, C. Grazioli, Alexander Yaresko, A. A. Kordyuk, Jörg Fink, M. Sing, Sergey Borisenko, Timur K. Kim, Helmuth Berger
Publikováno v:
Physical Review B. 69
We report an ARPES investigation of the circular dichroism in the first Brillouin zone (BZ) of under- and overdoped $\mathrm{Pb}\text{\ensuremath{-}}\mathrm{Bi}2212$ samples. We show that the dichroism has opposite signs for bonding and antibonding c
Autor:
S. Legner, Martin Knupfer, Helmuth Berger, Mark S. Golden, A. A. Kordyuk, Jörg Fink, Timur K. Kim, Konstantin Nenkov, Sergey Borisenko, Rolf Follath
Publikováno v:
Physical Review B. 66
The clearly resolved bilayer splitting in angle-resolved photoemission spectra of the underdoped Pb-Bi2212 compound raises the question of how the bonding and antibonding sheets of the Fermi surface are gapped in the superconducting state. Here we co