Sort by
Refine Your Search
-
Listed
-
Country
-
Employer
-
Field
-
of engineered light-matter interaction in bosonic cQED systems. We are a diverse team of scientists doing small-scale, curiosity-driven experiments to better understand the rich nonlinear dynamics when light, in
-
-resolution, high-speed, and deep 3D quantitative imaging. In collaboration with the Department of Clinical Medicine (UiT), the system will be evaluated for dynamic imaging of cardiac activity in engineered
-
reconstruction algorithms, enabling high-resolution, high-speed, and deep 3D quantitative imaging. In collaboration with the Department of Clinical Medicine (UiT), the system will be evaluated for dynamic imaging
-
physical approaches to optimise non-thermal hydrogen-boron laser fusion, including studies on laser-plasma particle acceleration, ion stopping power, dynamics and kinetics of high-density and strongly non
-
optimise its role in maximizing fusion performance Analyse the linear and nonlinear dynamics of key micro-instabilities to identify the fundamental physical mechanisms governing turbulent transport Develop
-
conduct researches of transport phenomena and dynamics of chemical reaction using the approaches of active matter, nonequilibrium statistical physics, theory/mathematical calculation method of nonlinear
-
approaches to optimise non-thermal hydrogen-boron laser fusion, including studies on laser-plasma particle acceleration, ion stopping power, dynamics and kinetics of high-density and strongly non-equilibrium
-
, where and how likely it is that extreme waves might occur. The candidate will conduct research and develop computational tools for simulation and modeling of wave dynamics, and for uncertainty
-
for simulation and modeling of wave dynamics, and for uncertainty quantification of extreme events. The project will combine stochastic mathematical models of wave physics with advanced computational methods
-
defense are eligible for appointment. Fluent oral and written communication skills in English Desired qualifications: Experience in dynamical analyses Familiarity with turbulence and nonlinear processes