Job Description
Work Activities
We are seeking a highly motivated postdoctoral researcher to work on cutting-edge optomechanical sensors. The project is part of a close collaboration between the Photonic Forces group at AMOLF, led by Ewold Verhagen, and the group of Simon Gröblacher at TU Delft. The position is embedded in QSTeM, a recently established Testbed for mechanical sensing, where novel sensors are designed, benchmarked, and developed with both academic and industrial partners. The project is mainly carried out at the QSTeM laboratory in Delft, and partly at the AMOLF institute in Amsterdam.
Mechanical resonators can serve as excellent sensors for a wide range of signals such as accelerations and electromagnetic fields, with applications ranging from industrial process control and biomedicine to inertial navigation. Recent progress in ultralow-dissipation nanomechanical platforms and quantum-limited optical measurement and control techniques have enabled mechanical resonators w...
We are seeking a highly motivated postdoctoral researcher to work on cutting-edge optomechanical sensors. The project is part of a close collaboration between the Photonic Forces group at AMOLF, led by Ewold Verhagen, and the group of Simon Gröblacher at TU Delft. The position is embedded in QSTeM, a recently established Testbed for mechanical sensing, where novel sensors are designed, benchmarked, and developed with both academic and industrial partners. The project is mainly carried out at the QSTeM laboratory in Delft, and partly at the AMOLF institute in Amsterdam.
Mechanical resonators can serve as excellent sensors for a wide range of signals such as accelerations and electromagnetic fields, with applications ranging from industrial process control and biomedicine to inertial navigation. Recent progress in ultralow-dissipation nanomechanical platforms and quantum-limited optical measurement and control techniques have enabled mechanical resonators w...
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