Gapless fracton quantum spin liquid and emergent photons in a 2D spin-1 model

Бесщелевой фрактонный квантовый спиновый жидкость и возникающие фотоны в двумерной модели со спином-1
Nils Niggemann, Johannes Reuther, Meghadeepa Adhikary, Yannik Schaden-Thillmann
2026-07-11

Green function Monte Carloemergent photonsgapless fracton quantum spin liquidrank-2 U(1) gauge theoryspin-1 square lattice model
Gapless fracton quantum spin liquids are exotic phases of matter described by higher-rank U(1) gauge theories, which host gapped and immobile fracton matter excitations as well as gapless photons. Despite well-known field theories, no spin models beyond purely classical systems have been identified to realize these phases. Using error-controlled Green function Monte Carlo, here we investigate a square lattice spin-1 model that shows precise signatures of a fracton quantum spin liquid without indications of conventional ordering. Specifically, the magnetic response exhibits characteristic patterns of suppressed pinch points that accurately match the prediction of a rank-2 U(1) field theory and reveals the existence of emergent photon excitations in 2+1 spacetime dimensions. Remarkably, this type of fracton quantum spin liquid is not only identified in the system's ground state but also in generic low-energy sectors of a strongly fragmented Hilbert space.
1
A square-lattice spin-1 quantum model is identified that realizes a gapless fracton quantum spin liquid beyond classical systems.
2
Error-controlled Green function Monte Carlo shows no signs of conventional ordering in this model.
3
Magnetic response displays suppressed pinch-point patterns that quantitatively match rank-2 U(1) field theory predictions.
4
The fracton quantum spin liquid appears not only in the ground state but also across generic low-energy sectors of a strongly fragmented Hilbert space.
5
The system exhibits emergent photon excitations in 2+1 spacetime dimensions.

Square-lattice spin-1 model exhibiting a gapless fracton quantum spin liquid

Emergence and signatures of a gapless fracton quantum spin liquid and its gapless photon excitations (rank-2 U(1) gauge-theory behavior, suppressed pinch-point magnetic response, and low-energy sector properties) in the model

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2026-07-11
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Nils Niggemann
Johannes Reuther
Meghadeepa Adhikary
Yannik Schaden-Thillmann
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