Zobrazeno 1 - 10
of 32
pro vyhledávání: '"R L Lange"'
Autor:
Hanno Volker, Matthias Wuttig, Stefan A. Maier, Matthias T. Agne, Theo Siegrist, Christian Poltorak, James P. Male, Felix R. L. Lange, Annika Poitz, G. Jeffrey Snyder, K. Simon Siegert
Publikováno v:
Matter. 4:2970-2984
Summary Thermoelectric materials could play an important role in global sustainable energy. However, improving thermoelectric efficiency has proved difficult, largely due to the complex interdependence of electronic properties of solids. Early work b
Publikováno v:
Brazilian Journal of Veterinary Research and Animal Science, Vol 41, Iss supl. (2004)
O artigo não apresenta resumo.
Externí odkaz:
https://doaj.org/article/b6532b69e18a487b90767f8b7f628fb3
Autor:
Bart J. Kooi, Felix R. L. Lange, Matthias Wuttig, Jamo Momand, Rui Ning Wang, Marcel A. Verheijen, Jos E. Boschker, Raffaella Calarco
Publikováno v:
Journal of materials research, 31(20), 3115-3124. Cambridge University Press
Journal of Materials Research, 31(20), 3115-3124. Materials Research Society
Journal of Materials Research, 31(20), 3115-3124. Materials Research Society
GeTe-Sb2Te3 superlattices have attracted major interest in the field of phase-change memories due to their improved properties compared with their mixed counterparts. However, their crystal structure and resistance-switching mechanism are currently n
In this paper we explore the potential of stoichiometry determination for chalcogenide superlattices, promising candidates for next-generation phase-change memory, via X-ray diffraction. To this end, a set of epitaxial GeTe/Sb2Te3 superlattice sample
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::45705baf61c5253b8ee29551fd52e0b1
http://arxiv.org/abs/1807.02829
http://arxiv.org/abs/1807.02829
Publikováno v:
Laser Resonators, Microresonators, and Beam Control XX.
The intensity distribution of a laser beam has a high impact on laser processing applications. In many applications, the emitted light of a laser beam source is transformed from a Gaussian intensity distribution into other intensity distributions wit
Autor:
Annika Poitz, Matthias Wuttig, Peter Zalden, Rüdiger Schmidt, Hanno Volker, Peter Jost, Christian Poltorak, Matti R. Wirtssohn, Felix R. L. Lange, Bernd Holländer, Tobias Schäfer
Publikováno v:
Advanced Functional Materials. 25:6399-6406
Disorder has a tremendous impact on charge transport in crystalline compounds on the pseudo-binary line between Sb2Te3 and GeTe. Directly after crystallization, the pronounced disorder on the cation sublattice renders crystalline Ge1Sb2Te4—a compos
Autor:
Felix R. L. Lange, Rui Ning Wang, Stefano Cecchi, Michael Hanke, Matthias Wuttig, Raffaella Calarco
A route to realize strain engineering in weakly bonded heterostructures is presented. Such heterostructures, consisting of layered materials with a pronounced bond hierarchy of strong and weak bonds within and across their building blocks respectivel
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::5f0858932df4410e1a09777bc78cf0c2
http://hdl.handle.net/10281/352520
http://hdl.handle.net/10281/352520
Autor:
Marc Wichern, R.-L. Lange
Publikováno v:
Water Science and Technology. 68:756-762
Sediments in combined sewers may negatively affect the performance of sewer systems and significantly promote the formation of hydrogen sulfide. To prevent this, German sewer systems are cleaned regularly but at high costs. In order to optimize the c
Autor:
Marco Malvestuto, Stefano Lupi, Valeria Bragaglia, Andrea Perucchi, Felix R. L. Lange, Barbara Casarin, Antonio Caretta, Fulvio Parmigiani, Matthias Wuttig, Raffaella Calarco, Paola Di Pietro
Publikováno v:
Physical Review B. 94
The extraordinary electronic and optical properties of the crystal-to-amorphous transition in phase-change materials have led to important developments in memory applications. A promising outlook is offered by nanoscaling such phase-change structures
Autor:
C. Schlockermann, Peter Jost, Ernst-Roland Sittner, Felix R. L. Lange, Karl Simon Siegert, Matthias Wuttig
Publikováno v:
physica status solidi (a). 210:147-152
Phase-change materials form a unique material class, characterized by a rather unusual combination of physical properties. Exhibiting fast crystallization and a large contrast in optical reflectivity and electrical conductivity between the amorphous