DYNAMITE is a high-performance solver for dynamical mean-field equations that reaches times up to 10^7 with linear runtime and sublinear memory scaling.
& Betbeder-Matibet, O
5 Pith papers cite this work. Polarity classification is still indexing.
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Community-structured Price-Pareto model supplies analytical per-cluster citation counts, Gini indices, and Pareto-II limits together with fitting estimators for real citation networks.
A Total Lagrangian finite element framework is derived for finite-deformation multibody dynamics with joints, contacts, and common material models.
A Lambda-type many-body quantum battery model shows collective charging and discharge suppression in the strong-coupling non-Markovian regime, with numerical simulations indicating that optimized driving and reservoir engineering enable rapid stable charging.
Surveys theoretical concepts of polariton Bose-Einstein condensates, emphasizing that linear and non-interacting effects explain much of the phenomenology including bosonic correlations and coherence buildup.
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DYNAMITE: A high-performance framework for solving Dynamical Mean-Field Equations
DYNAMITE is a high-performance solver for dynamical mean-field equations that reaches times up to 10^7 with linear runtime and sublinear memory scaling.
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The Price-Pareto growth model of networks with community structure
Community-structured Price-Pareto model supplies analytical per-cluster citation counts, Gini indices, and Pareto-II limits together with fitting estimators for real citation networks.
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A Total Lagrangian Finite Element Framework for Multibody Dynamics: Part I -- Formulation
A Total Lagrangian finite element framework is derived for finite-deformation multibody dynamics with joints, contacts, and common material models.
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Rapid and Stable Collective Charging and Discharge Suppression in Strongly Coupled Many-Body Quantum Batteries
A Lambda-type many-body quantum battery model shows collective charging and discharge suppression in the strong-coupling non-Markovian regime, with numerical simulations indicating that optimized driving and reservoir engineering enable rapid stable charging.
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Polariton BECs: Theory and Concepts
Surveys theoretical concepts of polariton Bose-Einstein condensates, emphasizing that linear and non-interacting effects explain much of the phenomenology including bosonic correlations and coherence buildup.