Emergent tracer dynamics in constrained quantum systems
arXiv:2205.07901 · doi:10.1103/PhysRevB.106.094303
Abstract
We show how the tracer motion of tagged, distinguishable particles can effectively describe transport in various homogeneous quantum many-body systems with constraints. We consider systems of spinful particles on a one-dimensional lattice subjected to constrained spin interactions, such that some or even all multipole moments of the effective spin pattern formed by the particles are conserved. On the one hand, when all moments - and thus the entire spin pattern - are conserved, dynamical spin correlations reduce to tracer motion identically, generically yielding a subdiffusive dynamical exponent . This provides a common framework to understand the dynamics of several constrained lattice models, including models with XNOR or - constraints. We consider random unitary circuit dynamics with such a conserved spin pattern and use the tracer picture to obtain exact expressions for their late-time dynamical correlations. Our results can also be extended to integrable quantum many-body systems that feature a conserved spin pattern but whose dynamics is insensitive to the pattern, which includes for example the folded XXZ spin chain. On the other hand, when only a finite number of moments of the pattern are conserved, the dynamics is described by a convolution of the internal hydrodynamics of the spin pattern with a tracer distribution function. As a consequence, we find that the tracer universality is robust in generic systems if at least the quadrupole moment of the pattern remains conserved. In cases where only total magnetization and dipole moment of the pattern are constant, we uncover an intriguing coexistence of two processes with equal dynamical exponent but different scaling functions, which we relate to phase coexistence at a first order transition.
17 pages, 10 figures
References in corpus (10)
- Thermalization and its mechanism for generic isolated quantum systems
- Local stabilizer codes in three dimensions without string logical operators
- Higher-Spin Witten Effect and Two-Dimensional Fracton Phases
- Diffusion in deterministic interacting lattice systems
- Universal subdiffusion in strongly tilted many-body systems
- A Yang-Baxter integrable cellular automaton with a four site update rule
- Hubbard-to-Heisenberg crossover (and efficient computation) of Drude weights at low temperatures
- Coupled Hydrodynamics in Dipole-Conserving Quantum Systems
- Emergent Fracton Dynamics in a Non-Planar Dimer Model
- Revisiting Kawasaki dynamics in one dimension
Cited by in corpus (7)
- Random Quantum Circuits
- Hilbert space fragmentation and slow dynamics in particle-conserving quantum East models
- Anomalous transport from hot quasiparticles in interacting spin chains
- Universal anomalous fluctuations in charged single-file systems
- Integrability breaking from backscattering
- Finite temperature spin diffusion in the Hubbard model in the strong coupling limit
- Emergence of anyonic correlations from spin and charge dynamics in one dimension