7 papers
Model-agnostic cooling algorithms for strongly interacting fermions
Henning Schlömer, Liyuan Chen, Susanne F. Yelin +1
Strongly interacting fermions underpin some of the most challenging problems in condensed matter physics, such as high-temperature superconductivity. The low-energy states of these…
Topology meets symmetry breaking: Hidden order, intrinsically gapless topological states and finite-temperature topological transitions
Reja H. Wilke, Henning Schlömer, Simon M. Linsel +2
Since the discovery of phase transitions driven by topological defects, the classification of phases of matter has been significantly extended beyond Ginzburg and Landau's paradigm…
Machine learning applications in cold atom quantum simulators
Henning Schlömer, Annabelle Bohrdt
As ultracold atom experiments become highly controlled and scalable quantum simulators, they require sophisticated control over high-dimensional parameter spaces and generate incre…
Emergent Interacting Phases in the Strong Coupling Limit of Twisted M-Valley Moiré Systems: Application to SnSe
Ming-Rui Li, Dumitru Calugaru, Yi Jiang +10
We construct an interacting Wannier model for both AA-stacked and AB-stacked twisted SnSe2, revealing a rich landscape of correlated quantum phases. For the AA-stacked case, the sy…
Geometric orthogonal metals: Hidden antiferromagnetism and pseudogap from fluctuating stripes
Henning Schlömer, Annabelle Bohrdt, Fabian Grusdt
One of the key features of hole-doped cuprates is the presence of an extended pseudogap phase, whose microscopic origin has been the subject of intense investigation since its disc…
Sub-dimensional magnetic polarons in the one-hole doped SU(3) - model
Henning Schlömer, Fabian Grusdt, Ulrich Schollwöck +2
The physics of doped Mott insulators is at the heart of strongly correlated materials and is believed to constitute an essential ingredient for high-temperature superconductivity.…