activity
20052008
most citedFluctuating epidemics on adaptive networks

264 citations · 563 across the 12 of their papers we have counts for

collaborators
Showing 2005Show all

7 papers · 1 filter

nlin.CD2005

Negative-coupling resonances in pump-coupled lasers

T. W. Carr, M. L. Taylor, I. B. Schwartz

We consider coupled lasers, where the intensity deviations from the steady state, modulate the pump of the other lasers. Most of our results are for two lasers where the coupling c…

nlin.CD2005

Dynamical epidemic suppression using stochastic prediction and control

I. B. Schwartz, L. Billings, E. M. Bollt

We consider the effects of noise on a model of epidemic outbreaks, where the outbreaks appear. randomly. Using a constructive transition approach that predicts large outbreaks, pri…

nlin.PS2005

Dynamic coordinated control laws in multiple agent models

David S. Morgan, Ira B. Schwartz

We present an active control scheme of a kinetic model of swarming. It has been shown previously that the global control scheme for the model, presented in \cite{JK04}, gives rise…

physics.bio-ph2005

Chaotic desynchronization of multi-strain diseases

Ira B. Schwartz, Leah B. Shaw, Derek A. T. Cummings +3

Multi-strain diseases are diseases that consist of several strains, or serotypes. The serotypes may interact by antibody-dependent enhancement (ADE), in which infection with a sing…

physics.bio-ph2005

Migration induced epidemics: Dynamics of flux-based multipatch models

Larry S. Liebovitch, Ira B. Schwartz

Classical disease models use a mass action term as the interaction between infected and susceptible people in separate patches. We derive the equations when this interaction is a m…

nlin.PS2005

A Collective Motion Algorithm for Tracking Time-Dependent Boundaries

Ioana Triandaf, Ira B. Schwartz

We present a numerical method that allows a formation of communicating agents to target the boundary of a time dependent concentration by following a time dependent concentration g…