collaborators

7 papers

cond-mat.str-el2026

Emergence of spin entanglement with the pseudogap onset in the Fermi-Hubbard model

Frederic Bippus, Thomas Chalopin, Gabriele Bellomia +6

Despite decades of intense theoretical and experimental investigation, the two-dimensional Fermi-Hubbard model still resists a complete microscopic understanding. Conventional appr…

quant-ph2026

Phase-Sensitive Measurements on a Fermi-Hubbard Quantum Processor

Alberto R. Cavallar, Luis Escalera-Moreno, Titus Franz +4

Fermionic quantum processors are a promising platform for quantum simulation of correlated fermionic matter. In this work, we study a hardware-efficient protocol for measuring comp…

cond-mat.quant-gas2026

High-fidelity collisional quantum gates with fermionic atoms

Petar Bojović, Timon Hilker, Si Wang +7

Quantum simulations of electronic structure and strongly correlated quantum phases are widely regarded as among the most promising applications of quantum computing. These computat…

cond-mat.quant-gas2026

Observation of Strong-to-Weak Spontaneous Symmetry Breaking in a Dephased Fermi Gas

Si Wang, Thomas G. Kiely, Dorothee Tell +9

Symmetry-based classification of quantum phases of matter is one of the most foundational organizing principles in physics; however, an analogous framework for mixed, decohered qua…

cond-mat.quant-gas2026

Realizing the Emery Model in Optical Lattices for Quantum Simulation of Cuprates and Nickelates

Hannah Lange, Liyang Qiu, Robin Groth +7

The microscopic origin of high-temperature superconductivity in cuprates remains one of the central open questions in condensed matter physics. Growing experimental and theoretical…

quant-ph2026

Constructing Arbitrary Coherent Rearrangements in Optical Lattices

Alexander Roth, Liyang Qiu, Timon Hilker +2

Coherent control of motional degrees of freedom of ultracold atoms in optical lattices offers a promising route towards programmable quantum dynamics with massive particles. We pro…