collaborators

5 papers

cond-mat.mes-hall2026

Topological Order in Neural Wavefunctions

Ahmed Abouelkomsan, Max Geier, Liang Fu

Topologically ordered states are among the most interesting quantum phases of matter that host emergent quasi-particles having fractional charge and obeying fractional quantum stat…

cond-mat.str-el2026

Predicting magnetism with first-principles AI

Max Geier, Liang Fu

Computational discovery of magnetic materials remains challenging because magnetism arises from the competition between kinetic energy and Coulomb interaction that is often beyond…

quant-ph2025

An integrated neural wavefunction solver for spinful Fermi systems

Alexander Avdoshkin, Max Geier, Liang Fu

We present an approach to solving the ground state of Fermi systems that contain spin or other discrete degrees of freedom in addition to continuous coordinates. The approach combi…

cond-mat.supr-con2025

Tunable superconducting diode effect in a topological nano-SQUID

Ella Nikodem, Jakob Schluck, Max Geier +6

A Josephson diode passes current with zero resistance in one direction but is resistive in the other direction. While such an effect has been observed in several platforms, a large…

cond-mat.mes-hall2025

Topological Insulator nano-SQUID: Flux-tunable platform for topological superconductivity

Ella Nikodem, Jakob Schluck, Henry F. Legg +5

Many efforts have been made in the past decade to realize topological superconductivity using superconducting proximity effect, but an ideal platform is still lacking. A 3D topolog…