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Michael Werner Zuerch

Associate Professor

Material Physics

  • Associate Professor
    Material Physics

BIO

Michael studied physics at the Friedrich Schiller University in Jena, Germany, and finished the diploma with honors in 2010. He then joined the research group of Christian Spielmann at Jena University working on high-resolution imaging with laser-driven extreme ultraviolet sources based on high harmonic generation and various projects involving nonlinear optics. In 2014 he finished his Ph. D. (Dr. rer. nat.) with summa cum laude. Subsequently, a Feodor Lynen Fellowship by the Alexander von Humboldt Foundation allowed him to move to the University of California at Berkeley where he joined the research groups of Stephen Leone and Daniel Neumark in the College of Chemistry in 2015. The research at UC Berkeley was focused on studying carrier and lattice dynamics at highest temporal resolution using attosecond extreme ultraviolet sources. Besides classical semiconductor materials, the research pushed the limits in studying two-dimensional materials and magnetic nanomaterials. Following another short stay at Jena on independent funding, in 2018 Michael joined the Department of Chemistry of the Fritz Haber Institute as an independent Max Planck Research Group leader. In Fall 2019 Michael joined the faculty at the University of California at Berkeley in the Department of Chemistry. In 2020 Michael was in addition appointed as Faculty Scientist at the Lawrence Berkeley National Laboratory. His research group at UC Berkeley focuses on the experimental investigation of structure and dynamics of complex, correlated solid-state materials. Specific areas if interest are the observation and control of collective phenomena between entities such as excitons, magnons and phonons, chemical material dynamics at surfaces and interfaces, symmetry-broken states and their emergence, and dynamical properties in artificial and correlated superlattices. To this end, my group develops new physical chemistry methods to directly measure and manipulate such systems away from equilibrium and push the limits of temporal and spatial resolution at the molecular level.

LAWRENCE BERKELEY NATIONAL LAB APPOINTMENTS

  • Materials Faculty Sci/Engr
    Material Physics, Materials Sciences, Energy Sciences, Berkeley, CA, USA2 Nov 2015 - present

AREA

  • Energy Sciences

DIVISION

  • Materials Sciences

RESEARCH AREAS