Doctoral Researcher; f/m/d), Scientific Member; f/m/d; -Field EPR Spectroscopy, Millimeter-Wave Resonators
Online/Außer Haus - Idealerweise für Kandidaten in
76344, Eggenstein-Leopoldshafen, Baden-Württemberg, Deutschland
Verfasst am 2026-09-14
76344, Eggenstein-Leopoldshafen, Baden-Württemberg, Deutschland
Unternehmen:
Karlsruhe Institute of Technology (KIT)
Per diem, Fernarbeit/Heimarbeit
position Verfasst am 2026-09-14
Berufliche Spezialisierung:
-
Forschung/Entwicklung
Elektronikingenieur, Forschungswissenschaftler, Physik -
Ingenieur
Elektronikingenieur, Elektrotechnik-Ingenieur, Forschungswissenschaftler, Physik
Stellenbeschreibung
Location: Eggenstein-Leopoldshafen
- Design, simulation, and optimization of advanced microwave and millimeter-wave resonators for high-field electron paramagnetic resonance (EPR) spectroscopy.
- Development of topologically optimized multi-resonance EPR detectors capable of simultaneous measurements on multiple samples with minimal crosstalk.
- Electromagnetic modeling and numerical optimization using COMSOL Multiphysics, CST Studio Suite, and related simulation tools.
- Fabrication and experimental characterization of microwave and millimeter-wave resonators operating from X-band frequencies up to 263 GHz.
- Development of novel interferometric microwave circuits for suppression of excitation-signal background and enhancement of EPR detection sensitivity.
- Integration of optoelectronic signal-generation and signal-readout modules with EPR resonators to realize compact fiber-coupled high-field EPR systems.
- Development and implementation of multi-sample and multi-resonance EPR detection platforms for operation at magnetic fields up to 9.4 T.
- Design and integration of radio frequency (RF) coils for electron-nuclear double resonance (ENDOR) and dynamic nuclear polarization (DNP) experiments.
- Experimental validation of the developed hardware through EPR, ENDOR, and DNP measurements on model paramagnetic samples.
- Publishing research results in leading international journals and presenting findings at international conferences.
- Design, simulation, and optimization of advanced microwave and millimeter-wave resonators for high-field electron paramagnetic resonance (EPR) spectroscopy.
- Development of topologically optimized multi-resonance EPR detectors capable of simultaneous measurements on multiple samples with minimal crosstalk.
- Electromagnetic modeling and numerical optimization using COMSOL Multiphysics, CST Studio Suite, and related simulation tools.
- Fabrication and experimental characterization of microwave and millimeter-wave resonators operating from X-band frequencies up to 263 GHz.
- Development of novel interferometric microwave circuits for suppression of excitation-signal background and enhancement of EPR detection sensitivity.
- Integration of optoelectronic signal-generation and signal-readout modules with EPR resonators to realize compact fiber-coupled high-field EPR systems.
- Development and implementation of multi-sample and multi-resonance EPR detection platforms for operation at magnetic fields up to 9.4 T.
- Design and integration of radio frequency (RF) coils for electron-nuclear double resonance (ENDOR) and dynamic nuclear polarization (DNP) experiments.
- Experimental validation of the developed hardware through EPR, ENDOR, and DNP measurements on model paramagnetic samples.
- Publishing research results in leading international journals and presenting findings at international conferences.
- A completed university degree (Master’s level) in Electrical Engineering, Photonics, Physics, Microsystems Engineering, Telecommunications Engineering, or a related field
- Strong knowledge of RF, microwave, or millimeter-wave engineering.
- Experience with electromagnetic simulation tools such as COMSOL, CST, HFSS, ADS, or equivalent software.
- Experience in micro fabrication and micro manufacturing.
- Knowledge of magnetic resonance techniques (EPR, NMR, MRI), microwave photonics, or microwave integrated circuits is advantageous.
- Excellent English communication skills, both written and spoken.
- Career‑Building and Developmental Opportunities :
We provide you with a structured onboarding program, a broad spectrum of continuing‑education options, and personalised support, thereby fostering your individual growth. - Flexible Working Hours :
Take advantage of flexible‑hours schemes, remote‑work options, and a 30‑day annual leave entitlement to…
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