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MORE-TEM development platform

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Universität Wien

Wien | Website

Open for Collaboration

Kurzbeschreibung

MORE-TEM is a revolutionary new development platform for electron nanospectroscopy which can be seen as table top synchrotron. It is funded by the EU via an ERC-Synergy project. It is based on a modified JEOL ARM200F microscope with continuous upgrades regarding monochromator, and spectrometer (filter) by the cooperation partner CEOS. It also will be upgraded by a purpose built cryoholder allowing low temperature experiments down to LHe temperatures.

Ansprechperson

Thomas Pichler

Research Services

MORE-TEM development platform is a joined EU international collaboration within an ERC-Project with continuous upgrades. Therefore the use is currently restricted to the collaboration partners until it is in full operation. Hence, currently there are no research services available.

Methoden & Expertise zur Forschungsinfrastruktur

Development platform with restricted usage until it is in full operation. Expert in nanospectrocopy inside a (Scanning)transmission electron spectroscopy (S)TEM, Expert in electron energy-loss spectroscopy (EELS) and electron optics development

Nutzungsbedingungen

Since MORE-TEM development platform is a joined international collaboration within an EU funded ERC-Synergy-Project with continuous upgrades. The use is currently restricted to the collaboration partners until it is in full operation. However, in very specific cases of prototype samples Prof. Pichler can be contacted in order to check if the MORE-TEM in the actual development status is suitable and might be available for a few test experiments.

Kooperationspartner

Osaka University, Sanken Institute,Japan (Osaka Vienna International Development (OVID) Laboratory)
SME CEOS Heidelberg, Germany
Universite la Sapienza Roma, Italy

Referenzprojekte

The reference project the MORE-TEM is based on is conducted in Japan.

Referenzpublikationen

Position and momentum mapping of vibrations in graphene nanostructures.
2019
R. Senga, K. Suenaga, P. Barone, S. Morishita, F. Mauri, T. Pichler,
Nature 573, 247–250.
https://doi.org/10.1038/s41586-019-1477-8
– Breakthrough paving the way to unravel the phonon dispersion of 2D materials including freestanding monolayers and nanoribbons

Kontakt

University Professor for Quantum & Solids, Faculty of Physics, University of Vienna
Thomas Pichler
Electronic Properties of Materials
06648175579
thomas.pichler@univie.ac.at
https://epm.univie.ac.at

Standort

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