Hyperuniformity in mass transport processes with center-of-mass conservation: Some exact results
arXiv:2410.00613 · doi:10.1088/1742-5468/ada88c
Abstract
We characterize steady-state static and dynamic properties in a broad class of mass transport processes on a periodic hypercubic lattice of volume , where both mass and {\it center-of-mass} (CoM) remain conserved and detailed balance is violated in the bulk; we specifically consider these models in and dimensions. Using a microscopic approach, we exactly determine the decay (or, growth) exponents for various dynamic and static correlation functions. We show that, despite constrained dynamics due to the CoM conservation (CoMC), the density relaxation is indeed diffusive. However, fluctuation properties are strikingly different from that in the diffusive systems with a single (mass) conservation law. In the thermodynamic limit, the steady-state variance of time-integrated bond current across a bond in time interval exhibits the following long-time behavior: . Remarkably, depending on dimensions and microscopic details, the prefactor can vanish (e.g., for ), causing the variance to eventually {\it saturate}. The exponents governing the small-frequency behavior of the power spectrum for bond current are exactly determined as and in and dimensions, respectively, implying a ``dynamic hyperuniformity''. We also compute the static structure factor , which, in the small- limit, varies as the square of wave number , i.e., . Indeed, both dynamic and static fluctuations are anomalously suppressed, resulting in an extreme form of (``class I'') hyperuniformity in the systems.
24 pages, 11 figures
References in corpus (20)
- Hyperuniformity of critical absorbing states
- Hyperuniform density fluctuations and diverging dynamic correlations in periodically driven colloidal suspensions
- Suppressed compressibility at large scale in jammed packings of size disperse spheres
- Noise, diffusion, and hyperuniformity
- Universality Class of the Reversible-Irreversible Transition in Sheared Suspensions
- Fixed-Energy Sandpiles Belong Generically to Directed Percolation
- Unifying Emergent Hydrodynamics and Lindbladian Low Energy Spectra across Symmetries, Constraints, and Long-Range Interactions
- Fracton hydrodynamics without time-reversal symmetry
- Vortices in the two-dimensional Simple Exclusion Process
- -fractonic Maxwell theory
- Exact spatial correlations in single-file diffusion
- Generalized Exclusion Processes: Transport Coefficients
- Correlations of the density and of the current in non-equilibrium diffusive systems
- Hyperuniformity of Maximally Random Jammed Packings of Hyperspheres Across Spatial Dimensions
- Hyperuniformity in the Manna Model, Conserved Directed Percolation and Depinning
- Enhancing (quasi-)long-range order in a two-dimensional driven crystal
- Dynamic correlations in the conserved Manna sandpile
- Anomalous relaxation and hyperuniform fluctuations in center-of-mass conserving systems with broken time-reversal symmetry
- Dynamic fluctuations of current and mass in nonequilibrium mass transport processes
- Current fluctuations in the symmetric zero-range process below and at critical density
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