A computer model found collective search and aggregation under a target-finding reward with no direct payoff for grouping, but the switch remained a finite-width crossover rather than a thermodynamic phase transition.
A mathematical model predicts geometric propulsion from thermal fluctuations and two cyclic controls, while linking extra dissipation to the geometry and timing of the control path.
A model-based arXiv preprint reports that delta-function kicks have a short-time work advantage in inertial stochastic systems, but the result depends on strict assumptions, quantum exceptions and protocol duration.
A theoretical and numerical ϕ4 calculation reports a lower violation for one conformal constraint at O(∂⁴) than at O(∂²), alongside a regulator-sensitivity pattern that appeared across two tested regulator families.
A theoretical preprint compares prepared auxiliary systems, or packets, and reports different preferred states for long-term decay and fixed-time readouts.
A finite-step thermodynamics study derives unique dissipation-minimizing intermediaries, finds a Fisher-Rao limit for many steps, and models a speed-versus-dissipation tradeoff in enzyme control.
A computational preprint reports agreement with several benchmarks and an inverse-square transition trend for simulated exclusion processes across one, two and three dimensions.
An exact mathematical study shows how chemical fuel shifts the stall point of an idealized Brownian engine, while an attached chemical loop can keep dissipating energy after motion stops.
An analytical study of independent active particles finds that net-flow fluctuations pass through several time-dependent regimes, while long-time statistics can retain information about the system's starting configuration.
A mathematical model reports topological bands in fluctuation intensity while the underlying mechanical dynamics and noise spectrum remain topologically trivial.
A laboratory preprint reports that 1T-TaS2 crystals followed sharply different transformation patterns during cooling and heating. The measurements and a phenomenological model point to branch-specific kinetics, but do not establish the microscopic cause or its wider relevance.
A version-1 arXiv preprint reports that a conformal-field-theory construction organized several kinds of post-quench dynamics in interacting non-Hermitian quantum-chain models. Parameters fixed from static data predicted later return, local and spatial behavior, with especially close matches in the Yang–Lee benchmark. The evidence is analytic and numerical, finite-size and model-specific.
A mathematical preprint finds that allowing the boundaries of a modeled polymer to move changes the predicted probabilities and timing of translocation. The results are exact for the Brownian model but remain theoretical, while the fractional-Brownian extension is numerical.
A theoretical study reports an exact higher Nishimori line for a specially designed Gaussian protocol and numerical evidence for a nearby emergent line in a discrete three-state Potts model.
A preprint proposes a trajectory-level framework for non-Markovian jump processes and applies it to thresholded BK-channel records. Conventional dwell memory was higher in cell-BK patches, while a state-and-age response residual was much higher in mitoBK patches.