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most citedDirac Strings and Magnetic Monopoles in Spin Ice Dy2Ti2O7

610 citations · 3.7k across the 152 of their papers we have counts for

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cond-mat.str-el2025

Hearing the light: stray-field noise from the emergent photon in quantum spin ice

Gautam K. Naik, Jonathan N. Hallén, Nishan C. Jayarama +2

Decisive experimental confirmation of the quantum spin liquid phase in quantum spin ice remains an outstanding challenge. In this work, we propose stray-field magnetometry a…

cond-mat.stat-mech2025

Floquet Superheating

Yang Hou, Andrea Pizzi, Huike Jin +3

Periodically driven many-body systems generally heat towards a featureless 'infinite-temperature' state. As an alternative to uniform heating in a clean system, here we establish a…

cond-mat.str-el2025

Spinon band flattening by its emergent gauge field in quantum kagome ice

Masafumi Udagawa, Roderich Moessner

Fractional excitations provide a key to identifying sought-after topological quantum spin liquid states in realistic materials. Their single-particle dynamics already presents a ch…

quant-ph2025

Kinetically constrained cavity QED: from blockaded ferromagnetism to long-range quantum scars

Hossein Hosseinabadi, Riccardo J. Valencia-Tortora, Aleksandr N. Mikheev +4

Rydberg-cavity systems are emerging as promising platforms for quantum simulation and quantum information processing. These hybrid architectures combine two complementary interacti…

cond-mat.str-el2025

Spectral Functions of an Extended Antiferromagnetic Heisenberg Model on the Triangular Lattice

Markus Drescher, Laurens Vanderstraeten, Roderich Moessner +1

We study an extended spin- antiferromagnetic Heisenberg model on the triangular lattice, which includes both nearest- and next-nearest-neighbor interactions, as well as a scal…

cond-mat.str-el2025

Phases of Interacting Fibonacci Anyons on a Ladder at Half-Filling

Nico Kirchner, Roderich Moessner, Frank Pollmann +1

Two-dimensional many-body quantum systems can exhibit topological order and support collective excitations with anyonic statistics different from the usual fermionic or bosonic one…