most citedParaToric 1.0: Continuous-time quantum Monte Carlo for the toric code in a parallel field

1 citations · 1 across the 1 of their papers we have counts for

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6 papers

quant-ph20261 cited

ParaToric 1.0: Continuous-time quantum Monte Carlo for the toric code in a parallel field

Simon M. Linsel, Lode Pollet

We introduce ParaToric, a C++ package for simulating the toric code in a parallel field (i.e., - and -fields) at finite temperature. We implement and extend the continuous-ti…

quant-ph2026

Distance learning from projective measurements as an information-geometric probe of many-body physics

Oleksii Malyshev, Simon M. Linsel, Fabian Grusdt +3

The ability of modern quantum simulators--both digital and analogue--to generate large ensembles of single-shot projective "snapshots" has opened a data-rich avenue for the study o…

quant-ph2026

Independent e- and m-anyon confinement in the parallel field toric code on non-square lattices

Simon M. Linsel, Lode Pollet, Fabian Grusdt

Kitaev's toric code has become one of the most studied models in physics and is highly relevant to the fields of both quantum error correction and condensed matter physics. Most no…

quant-ph2025

Approximately-symmetric neural networks for quantum spin liquids

Dominik S. Kufel, Jack Kemp, DinhDuy Vu +3

We propose and analyze a family of approximately-symmetric neural networks for quantum spin liquid problems. These tailored architectures are parameter-efficient, scalable, and sig…

cond-mat.str-el2025

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…

cond-mat.str-el2025

Emergent spinon-holon Feshbach resonance in a doped Majumdar-Ghosh model

Simon M. Linsel, Ulrich Schollwöck, Annabelle Bohrdt +1

Experimental and numerical spectroscopy have revealed rich physics in antiferromagnets, in particular in frustrated and doped systems. The Majumdar-Ghosh (MG) model has an analytic…