collaborators

6 papers

math-ph2025

Gibbs state postulate from dynamical stability -- Redundancy of the zeroth law

Vjosa Blakaj, Matthias C. Caro, Anouar Kouraich +2

Gibbs states play a central role in quantum statistical mechanics as the standard description of thermal equilibrium. Traditionally, their use is justified either by a heuristic, a…

quant-ph2025

Renormalization-group-based preparation of matrix product states on up to 80 qubits

Moritz Scheer, Alberto Baiardi, Elisa Bäumer Marty +2

A key challenge for quantum computers is the efficient preparation of many-body entangled states across many qubits. In this work, we demonstrate the preparation of matrix product…

quant-ph2025

Gaussian tomography for cold-atom simulators

Matthew Kiser, Max McGinley, Daniel Malz

A limitation of analog quantum simulators based on cold atoms in optical lattices is that readout is typically limited to observables diagonal in the charge basis, i.e., densities…

cond-mat.quant-gas2025

Estimating applied potentials in cold atom lattice simulators

Bhavik Kumar, Daniel Malz

Cold atoms in optical lattices are a versatile and highly controllable platform for quantum simulation, capable of realizing a broad family of Hubbard models, and allowing site-res…

quant-ph2025

Computational complexity of injective projected entangled pair states

Dylan Harley, Freek Witteveen, Daniel Malz

Projected entangled pair states (PEPS) constitute a variational family of quantum states with area-law entanglement. PEPS are particularly relevant and successful for studying grou…

quant-ph2025

Unraveling superradiance: Entanglement and mutual information in collective decay

Xin H. H. Zhang, Daniel Malz, Peter Rabl

We study the collective decay of an initially inverted ensemble of two-level emitters in two distinct scenarios: when coupled to a squeezed photonic reservoir and when interacting…