13 electrical-engineer-"https:"-"https:"-"https:"-"https:"-"UCL" Postdoctoral positions at Argonne
Sort by
Refine Your Search
-
availability. Relevant Publications: 1. P. Chen et al., Ultrafast photonic micro-systems to manipulate hard X-rays at 300 picoseconds, Nat Commun, 10:1158 (2019). https://doi.org/10.1038/s41467-019-09077-1. 2
-
fabrication, and characterization. This position offers the opportunity to pioneer new directions in heterointegration and electrical characterization while contributing to CNM’s mission as a national user
-
Argonne National Laboratory to advance learning-enabled imaging methods. This position offers a unique opportunity for candidates with backgrounds in electrical engineering, computer science, applied
-
-state inorganic materials, including chalcogenides, pnictides, halides, and intermetallic compounds. The position also involves comprehensive structural, optical, magnetic, and electrical
-
morphology. Develop in-situ and operando experiments under electrical, thermal, or mechanical bias to capture real-time defect dynamics. Integrate multimodal datasets and collaborate with AI/ML teams
-
solver, capable of running simulations on the Aurora supercomputer, using AMReX ( https://amrex-codes.github.io/amrex/ ) and the lattice Boltzmann method (LBM). The candidate will develop flow/geometry
-
materials. The focus is to develop novel electrochemical deposition methods, control interfacial reaction kinetics, and engineer functional coatings and thin films. Advanced process design and
-
Physics, AMO physics, Electrical Engineering, and Materials Science Engineering, or a closely related discipline. Demonstrated experience in terahertz generation and characterization, free-space optic
-
years) in physics, electrical engineering, materials science, or a closely related field Experience in the development and/or deployment of superconducting devices, or related technologies in quantum
-
, and teamwork Preferred Background Experience in one or more of the following areas will help candidates succeed in this role: Critical elements and materials Electrical double layer theory and