1 hr 11 min

Eugene Demler: Photons for many body physics: a platform and probe Sommerfeld Lecture Series (ASC)

    • Science

In this talk, I will discuss the applications of cavity electrodynamics for controlling many-body electron systems. The focus will be on achieving strong coupling between cavities and collective excitations of interacting electrons at Terahertz and IR frequencies. As a specific example I will consider a cavity platform based on a two dimensional electronic material encapsulated by a planar cavity consisting of ultrathin polar van der Waals crystals. I will also discuss how metallic mirrors sandwiching a paraelectric material can modify the transition into the ferroelectric state. Finally, I will review a general question of theoretically describing ultrastrong coupling waveguide QED. I will present a novel approach to this problem based on a non-perturbative unitary transformation that entangles photons and matter excitations. In this new frame of reference, the factorization between light and matter becomes exact for infinite interaction strength and an accurate effective model can be derived for all interaction strengths.

In this talk, I will discuss the applications of cavity electrodynamics for controlling many-body electron systems. The focus will be on achieving strong coupling between cavities and collective excitations of interacting electrons at Terahertz and IR frequencies. As a specific example I will consider a cavity platform based on a two dimensional electronic material encapsulated by a planar cavity consisting of ultrathin polar van der Waals crystals. I will also discuss how metallic mirrors sandwiching a paraelectric material can modify the transition into the ferroelectric state. Finally, I will review a general question of theoretically describing ultrastrong coupling waveguide QED. I will present a novel approach to this problem based on a non-perturbative unitary transformation that entangles photons and matter excitations. In this new frame of reference, the factorization between light and matter becomes exact for infinite interaction strength and an accurate effective model can be derived for all interaction strengths.

1 hr 11 min

Top Podcasts In Science

Something You Should Know
Mike Carruthers | OmniCast Media | Cumulus Podcast Network
Technically Speaking: An Intel Podcast
iHeartPodcasts
Radiolab
WNYC Studios
Hidden Brain
Hidden Brain, Shankar Vedantam
Ologies with Alie Ward
Alie Ward
StarTalk Radio
Neil deGrasse Tyson

More by Ludwig-Maximilians-Universität München

Hegel lectures by Robert Brandom, LMU Munich
Robert Brandom, Axel Hutter
John Lennox - Hat die Wissenschaft Gott begraben?
Professor John C. Lennox, University of Oxford
MCMP – Philosophy of Mathematics
MCMP Team
MCMP – Logic
MCMP Team
Rachel Carson Center (LMU RCC) - SD
Rachel Carson Center (RCC)
Women Thinkers in Antiquity and the Middle Ages - SD
Peter Adamson