ETH Zürich
Postdoctoral Position in attosecond chiroptical coincidence spectroscopy
📍 Zurich
Role and responsibilities
Lead the realization and commissioning of the optical platform for circularly polarized isolated attosecond pulses, including the integration of CEP stabilization, XUV optics and active path-length stabilization. Develop and validate methods for the complete temporal and polarization characterization of circularly polarized isolated attosecond pulses using three-dimensional momentum-resolved photoelectron measurements. Integrate and commission spin-resolved electron detection. Support and scientifically coordinate the reaction-microscope experiments on bound electronic wave packets, charge migration, charge transfer and microhydrated chiral molecules. Mentor doctoral and Master's researchers in optical alignment, detector operation, data analysis and good experimental practice. Work closely with the Attochirality team, including the group's electronic and mechanical engineers and external collaborators in spin detection and theoretical modeling. Contribute to project planning, risk mitigation, publications, conference presentations and the dissemination of results.
Team / description
The Ultrafast Spectroscopy and Attosecond Science group at the Laboratory of Physical Chemistry, Department of Chemistry and Applied Biosciences, ETH Zurich develops experimental methods for measuring and controlling electronic dynamics in molecules on attosecond time scales, during chemical reactions and in the liquid phase.
Qualifications and Skills
A PhD in experimental atomic, molecular or optical physics, physical chemistry, photonics, laser physics or a closely related field, completed by the starting date
A strong publication record demonstrating independent experimental research
Substantial hands-on experience in at least two of the following areas: femtosecond or attosecond laser systems, high-harmonic generation, XUV beamlines, CEP-sensitive experiments, ultrafast pulse characterization, charged-particle momentum spectroscopy, electron detectors or spin-resolved photoelectron spectroscopy
Proven ability to design, construct, commission and troubleshoot complex optical and vacuum instrumentation
Strong skills in experimental control and scientific data analysis, preferably using Python, C/C++, MATLAB, LabVIEW or related tools
The ability to guide junior researchers and coordinate work across a collaborative experimental project
Excellent written and spoken English and a rigorous, constructive and collegial working style
Experience with high-harmonic generation, circular-polarization metrology, reaction microscopes/COLTRIMS, Mott or spin-LEED detectors, active interferometric stabilization or high-repetition-rate laser systems would be particularly valuable