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Matthias Wuttig

Showing results (31-40 of 106) with videos related to

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Nanophotonics (Berlin, Germany)|December 5, 2024
Nanostructured In<sub>3</sub>SbTe<sub>2</sub> antennas enable switching from sharp dielectric to broad plasmonic resonancesAndreas Heßler, Sophia Wahl, Philip Trøst Kristensen, et al.
Nature Communications|August 30, 2013
Measurement of crystal growth velocity in a melt-quenched phase-change materialMartin Salinga, Egidio Carria, Andreas Kaldenbach, et al.
Advanced Materials (Deerfield Beach, Fla.)|November 27, 2018
A Quantum-Mechanical Map for Bonding and Properties in SolidsJean-Yves Raty, Mathias Schumacher, Pavlo Golub, et al.
Science Advances|January 18, 2020
Uncovering β-relaxations in amorphous phase-change materialsSi-Xu Peng, Yudong Cheng, Julian Pries, et al.
Scientific Reports|October 7, 2014
How fragility makes phase-change data storage robust: insights from ab initio simulationsWei Zhang, Ider Ronneberger, Peter Zalden, et al.
Light, Science & Applications|September 1, 2018
Beam switching and bifocal zoom lensing using active plasmonic metasurfacesXinghui Yin, Tobias Steinle, Lingling Huang, et al.
Advanced Materials (Deerfield Beach, Fla.)|December 1, 2022
Revisiting the Nature of Chemical Bonding in Chalcogenides to Explain and Design their PropertiesMatthias Wuttig, Carl-Friedrich Schön, Jakob Lötfering, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|February 16, 2019
Role of grain boundaries in Ge-Sb-Te based chalcogenide superlatticesOana Cojocaru-Mirédin, Henning Hollermann, Antonio M Mio, et al.
Nature Communications|June 25, 2015
Aging mechanisms in amorphous phase-change materialsJean Yves Raty, Wei Zhang, Jennifer Luckas, et al.
Inorganic Chemistry|August 29, 2018
Controlled Crystal Growth of Indium Selenide, In<sub>2</sub>Se<sub>3</sub>, and the Crystal Structures of α-In<sub>2</sub>Se<sub>3</sub>Michael Küpers, Philipp M Konze, Alexander Meledin, et al.
Pageof 11

Showing results (31-40 of 106) with videos related to

Sort By:
Pageof 11
Nanophotonics (Berlin, Germany)|December 5, 2024
Nanostructured In<sub>3</sub>SbTe<sub>2</sub> antennas enable switching from sharp dielectric to broad plasmonic resonancesAndreas Heßler, Sophia Wahl, Philip Trøst Kristensen, et al.
Nature Communications|August 30, 2013
Measurement of crystal growth velocity in a melt-quenched phase-change materialMartin Salinga, Egidio Carria, Andreas Kaldenbach, et al.
Advanced Materials (Deerfield Beach, Fla.)|November 27, 2018
A Quantum-Mechanical Map for Bonding and Properties in SolidsJean-Yves Raty, Mathias Schumacher, Pavlo Golub, et al.
Science Advances|January 18, 2020
Uncovering β-relaxations in amorphous phase-change materialsSi-Xu Peng, Yudong Cheng, Julian Pries, et al.
Scientific Reports|October 7, 2014
How fragility makes phase-change data storage robust: insights from ab initio simulationsWei Zhang, Ider Ronneberger, Peter Zalden, et al.
Light, Science & Applications|September 1, 2018
Beam switching and bifocal zoom lensing using active plasmonic metasurfacesXinghui Yin, Tobias Steinle, Lingling Huang, et al.
Advanced Materials (Deerfield Beach, Fla.)|December 1, 2022
Revisiting the Nature of Chemical Bonding in Chalcogenides to Explain and Design their PropertiesMatthias Wuttig, Carl-Friedrich Schön, Jakob Lötfering, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|February 16, 2019
Role of grain boundaries in Ge-Sb-Te based chalcogenide superlatticesOana Cojocaru-Mirédin, Henning Hollermann, Antonio M Mio, et al.
Nature Communications|June 25, 2015
Aging mechanisms in amorphous phase-change materialsJean Yves Raty, Wei Zhang, Jennifer Luckas, et al.
Inorganic Chemistry|August 29, 2018
Controlled Crystal Growth of Indium Selenide, In<sub>2</sub>Se<sub>3</sub>, and the Crystal Structures of α-In<sub>2</sub>Se<sub>3</sub>Michael Küpers, Philipp M Konze, Alexander Meledin, et al.
Pageof 11