Sort by
Refine Your Search
-
Category
-
Country
-
Program
-
Employer
- SUNY University at Buffalo
- CNRS
- FAPESP - São Paulo Research Foundation
- University of Glasgow
- European Synchrotron Radiation Facility
- Forschungszentrum Jülich
- Universidade do Minho
- University of A Coruña
- University of California, Los Angeles
- University of Sheffield
- AALTO UNIVERSITY
- Amgen Scholars Program
- COFUND QuanG
- Grenoble INP - Institute of Engineering
- Heriot Watt University
- IMEC
- INM - Leibniz-Institute for New Materials gGmbH
- Institute of Geological Sciences, Polish Academy of Sciences
- Istituto Italiano di Tecnologia
- Karlsruhe Institute of Technology •
- McGill University
- NIST
- Princeton University
- Rutgers University
- Stanford University
- Technische Universität Dresden (TU Dresden)
- Texas A&M University
- The University of Arizona
- Tohoku University
- Umeå University
- University of Alabama, Tuscaloosa
- University of Antwerp
- University of British Columbia
- University of Copenhagen
- University of Florida
- University of Hamburg
- University of Manchester
- University of Maryland, Baltimore
- University of South Carolina
- University of Wroclaw
- VSB - Technical University of Ostrava
- Łukasiewicz Research Network - Institute of Microelectronics and Photonics
- Łukasiewicz Research Network - Krakow Institute of Technology
- 33 more »
- « less
-
Field
-
nanostructures—developed for tunable Josephson junctions in quantum devices—using high-resolution transmission electron microscopy (TEM). Currently, quantum processors suffer from short coherence times due
-
culture, fluorescence confocal microscopy, transmission electron microscopy, digital image analysis and statistics. The capacity to thrive in a highly collaborative research laboratory environment is
-
characterization using TEM techniques such as scanning transmission electron microscopy, convergent beam electron diffraction, electron energy loss spectroscopy, and geometrical phase analysis Investigation
-
(sample preparation); Microscopy imaging (brightfield, confocal, and transmission electron microscopy); Flow cytometry: multiple channel FACS analysis and immune profiling; Administrative duties (taking
-
, Transmission Electron Microscopy (for their lattice structure and crystalline defects) and transport measurements (both in the normal and superconducting state). Devices will be realized by clean room standard
-
materials using electron microscopy and/or scattering techniques practical experience with electron microscopy methods, such as transmission electron microscopy (TEM) and/or scanning electron microscopy (SEM
-
(sample preparation); Microscopy imaging (brightfield, confocal, and transmission electron microscopy); Flow cytometry: multiple channel FACS analysis and immune profiling; Administrative duties (taking
-
electron microscopy. Support experiments and research activities under the direction of faculty or senior researchers. Laboratory Equipment Operation and Maintenance Operate laboratory equipment according
-
, transmission lines or impedance-matching techniques. Spectrum analyser measurements. Vector network analyser measurements. RF receiver or wireless-system characterisation. Design and assembly of RF or electronic
-
Evolution Under Ion Irradiation using transmission electron microscopy. In situ transmission electron microscopy (TEM) is a powerful characterization technique that can be used to provide a comprehensive