In this project you will create dipolar Fermi and Bose gases of Erbium atoms
and use them to study strongly-correlated lattice spin systems and spinor
system. Moreover, the newly discover ultra-narrow inner-shell optical
transition in Erbium (similar to a clock transition in alkali-earth atoms)
will be used to access new regime of control and manipulation for quantum
simulation and quantum optics physics. You will work in a team of two PhD
students, one Master student, co-PI Manfred Mark, and PI Francesca Ferlaino.
Moreover, you will collaborate with the ultracold-quantum-gas theory group in
Innsbruck and a network of external collaborators. The Lab, located at the
University of Innsbruck, is fully operative.
Web site for additional job details
https:// www. erbium.at/FF/
REQUIRED EDUCATION LEVEL
Physics: PhD or equivalent
A PhD in Experimental AMO Physics (and ideally on ultracol atoms)
The candidate must have already proven expertise in experimental atomic
physics, knowledge on laser, vacuum and electronics technology.
Organisation/Company: University of Innsbruck
Department: Institute of Experimental Physics - AG Ferlaino
The Stefan Meyer Institute for Subatomic Physics (SMI), of the Austrian
Academy of Sciences (OeAW), Austria's leading non-university research and
in atomic beam experiments for tests of the Standard Model
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