Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
-
Field
-
thermal energy storage systems based on Phase Change Materials (PCMs). The project relies on a unique high-temperature experimental facility developed during the PhD project INNO-REV and currently in its
-
performance. This postdoctoral project aims to investigate the potential of newly developed high-temperature superconducting materials — such as ZrN, HfN, and NbTiN — produced by ICPMS-CNT and CEA-LETI, as
-
this limitation by developing a unique platform that combines high-intensity terahertz pulses with ultra-cold environments. This innovative approach will enable researchers to observe and control the motion
-
control over the structure of the nanoparticles. For that purpose, temperature is a decisive external parameter driving the structure both during synthesis and during many practical uses, including cancer
-
solid state physics - superconductivity/ quantum devices - clean room micro-nano fabrication - optical setups in a weak photon flux regime - low temperature and/or high frequency transport measurements
-
2030), dedicated to the development of high-performance cryogenic technologies for quantum technologies, and more specifically to ultra-low-temperature thermometry in the millikelvin range
-
computational tools (mainly in-house LBM code) for multiphysics simulations involving: heat transfer multiphase flows sorption kinetics The overall objective is to improve the understanding and optimization
-
materials under extreme conditions of intense magnetic fields (exceeding 90 T) and very low temperatures (down to 100 mK). Scientific targets will be to investigate the properties of quantum materials (UTe2
-
: The postdoctoral researcher will contribute to the development and application of the AESEC technique for the study of electrochemical systems in extreme environments, particularly in concentrated high-temperature
-
a major energy-transition challenge: reducing CO₂ emissions from high-temperature chemical processes, a large share of industrial energy use. Key processes—methane steam reforming, naphtha steam