ETH Zurich
Postdoctoral researcher in quantum cavity optomechanics
100%, Zurich, temporary
Within the framework of the ERC Synergy project Q-Xtreme , the Nanophotonic Systems Laboratory (Pr. RomainQuidant) at ETH Zurich is searching for a motivated postdoctoral researcher to develop integrated trap designs to study coherent expansion and quantum operations on levitated nanoparticles in the quantum regime.
Project background
Quantum mechanics is a very successful and well-established theory on the microscale. A manifold of breakthrough experiments using atoms, ions and even large molecules have proven many astonishing predictions made by Quantum mechanics. Nevertheless, our everyday world behaves classical. In order to shed light on the transition between the quantum and classical world, we develop an experimental platform based on Levitodynamics to prepare a mesoscopic particle in its motional ground state and create the first quantum superposition on the mesoscopic scale.
The Q-Xtreme consortium is a close collaboration between world leading research groups from Switzerland (Novotny@ETHZ, Quidant@ETHZ) and Austria (Aspelmeyer@UW and Romero-Isart@UIBK), that brings together complementary expertise and knowhow in optics, nanofabrication, cryogenic vacuum technology, instrument development, quantum theory and numerical simulations to tackle this milestone experiment.
Job description
We are searching for a talented postdoctoral researcher to work on the engineering of on-chip hybrid electrostatic/optical potentials, and their application to levitated nanoparticles. Some of the main tasks cover:
Design and characterization of electrical and optical micro- and nanosystems
Numerical simulations of optical and electrostatic potentials
Develop experimental setups for levitated nanoparticles
Interact with collaborators from inside and outside the consortium
Assist in the supervision of PhD and master students
Write publications and promote the results at internal synergy meetings & international conferences
Your profile
Successful candidates must hold a PhD degree in physics or engineering and have proven track-record in micro- and nanofabrication. Experience in optomechanics, cryogenics, numerical simulation and automatization is beneficial.
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