HomeQuantum PhysicsQuantum Spin Liquid — Dimer Resonance & Spinon Deconfinement

Quantum Spin Liquid — Dimer Resonance & Spinon Deconfinement

Interactive Rokhsar–Kivelson quantum dimer model: watch a valence-bond (dimer) covering resonate between configurations, tune the resonance-vs-potential balance to melt or freeze the pattern, and release a spinon pair to see deconfined excitations wander apart at no energy cost.

Quantum Physics3DAdvanced60 FPS📱 Mobile-adapted
quantum-materials ↗ Open standalone

This simulator renders the Rokhsar–Kivelson quantum dimer model, the standard toy model for a resonating-valence-bond quantum spin liquid. A square lattice of spins is covered by valence-bond dimers; flippable 2×2 plaquettes resonate between their two dimer patterns at a rate you control, and a potential-bias slider pushes the system between a fluctuating liquid with no static order and a frozen columnar crystal. Break a bond to release a spinon pair and watch the fractional excitations hop apart with no confining string, the signature of spin-liquid deconfinement.

⚙ Under the hood

An interactive Rokhsar–Kivelson quantum dimer model: watch a valence-bond covering resonate between configurations, tune the resonance-vs-potential balance to melt or freeze the pattern into a spin liquid or a crystal, and release a spinon pair to see it deconfine.

quantum spin liquiddimer modelRVBcondensed mattertopological orderspinon

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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