Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Employer
- CNRS
- NIST
- California Institute of Technology
- ETH Zürich
- FAPESP - São Paulo Research Foundation
- Institute of Photonic Sciences
- National Aeronautics and Space Administration (NASA)
- Zintellect
- ADELAIDE UNIVERSITY
- AGH University of Krakow
- Abertay University
- Adam Mickiewicz University, Poznań
- European Southern Observatory Observatory
- European Space Agency
- European Synchrotron Radiation Facility
- George Mason University
- ISCR UMR CNRS 6226 Université de Rennes
- Indiana University
- Institute of Physics, Polish Academy of Sciences, Warsaw
- Instituto de Neurociencia Avanzada de Barcelona
- KU LEUVEN
- Munster Technological University
- NOVA.id.FCT- Associação para a Inovação de Desenvolvimento da FCT
- National Institute of Materials Physics
- North Carolina State University
- Pennsylvania State University
- SINGAPORE INSTITUTE OF TECHNOLOGY (SIT)
- Silesian University of Technology
- THE UNIVERSITY OF HONG KONG
- Technical University of Munich
- The University of Arizona
- The University of Chicago
- UNIVERSIDADE DE ÉVORA
- UNIVERSITY OF SOUTHAMPTON
- Umeå University
- University College London
- University of Amsterdam (UvA)
- University of Minnesota
- University of Nevada Las Vegas
- University of Sheffield
- University of Texas at Arlington
- Université Paris-Saclay GS Sciences de l'ingénierie et des systèmes
- Université Sorbonne Paris Nord
- Yale University
- 34 more »
- « less
-
Field
-
nanostructures, metal-organic frameworks, oil painting, quantum materials etc. References 1. Kurouski D., Dazzi A., Zenobi R. Centrone A., "Infrared and Raman chemical imaging and spectroscopy at the nanoscale
-
application end stations to be used for imaging, absorption/reflection spectroscopy, and other quantum sensing techniques. Practical working knowledge and hands‑on experience with lasers and optics, spanning
-
nanomaterials characterization • Hands-on experience with one or more advanced characterization techniques, ideally including atomic force microscopy, ellipsometry, infrared or Raman spectroscopy, light and X-ray
-
for the kinetic rate equations Investigate dust formation and wind-driving mechanisms by modelling spectral energy distributions, including infrared data Analyse a unique sample of well-characterised evolved stars
-
spectroscopy respectively), as well as a multitude of facilities in the visible and near infrared from the ground, will yield a wealth of scientific results in the next decade. At the same time, studies
-
, and collective behaviors. We use neuroimaging methods such as fMRI and fNIRS (functional near-infrared spectroscopy), to examine the influence of environmental factors on brain activity. We also use
-
, execution, analysis and science for planet surveys such as the near-infrared RV survey being conducted by the Habitable Zone Planet Finder on the 10m Hobby-Eberly telescope to discover planets around M