144 citations · 385 across the 8 of their papers we have counts for
12 papers
Scaling in Small-World Resistor Networks
G. Korniss, M. B. Hastings, K. E. Bassler +3
We study the effective resistance of small-world resistor networks. Utilizing recent analytic results for the propagator of the Edwards-Wilkinson process on small-world networks, w…
Spatial Dynamics of Invasion: The Geometry of Introduced Species
G. Korniss, Thomas Caraco
Many exotic species combine low probability of establishment at each introduction with rapid population growth once introduction does succeed. To analyze this phenomenon, we note t…
Gradient Networks
Zoltan Toroczkai, Balazs Kozma, Kevin E. Bassler +2
We define gradient networks as directed graphs formed by local gradients of a scalar field distributed on the nodes of a substrate network G. We derive an exact expression for the…
Algorithms for faster and larger dynamic Metropolis simulations
M. A. Novotny, Alice K. Kolakowska, G. Korniss
In dynamic Monte Carlo simulations, using for example the Metropolis dynamic, it is often required to simulate for long times and to simulate large systems. We present an overview…
Virtual Time Horizon Control via Communication Network Design
Z. Toroczkai, G. Korniss, M. A. Novotny +1
We consider massively parallel discrete event simulations where the communication topology among the processing elements is a complex graph. In the case of regular topologies we re…
Suppressing Roughness of Virtual Times in Parallel Discrete-Event Simulations
G. Korniss, M. A. Novotny, H. Guclu +2
In a parallel discrete-event simulation (PDES) scheme, tasks are distributed among processing elements (PEs), whose progress is controlled by a synchronization scheme. For lattice…