In a recent work, a new numerical method (the lifespan method) has been introduced to study the critical properties of epidemic processes on complex networks [M. Boguñá, C. Castellano, and R. Pastor-Satorras, Phys. Rev. Lett. 111, 068701 (2013)]. Here, we present a detailed analysis of the viability of this method for the study of the critical properties of generic absorbing-state phase transitions in lattices. Focusing on the well-understood case of the contact process, we develop a finite-size scaling theory to measure the critical point and its associated critical exponents. We show the validity of the method by studying numerically the contact process on a one-dimensional lattice and comparing the findings of the lifespan method with th...
We present an analysis of the quasistationary (QS) state of the contact process (CP) on annealed sca...
Much of the research on the behavior of the SIS model on networks has concerned the infinite size li...
AbstractWe investigate the critical behavior of a stochastic lattice model describing a General Epid...
In a recent work, a new numerical method (the lifespan method) has been introduced to study the crit...
We investigate the properties of the threshold contact process (TCP), a process showing an absorbing...
We investigate the properties of the threshold contact process (TCP), a process showing an absorbing...
We investigate the properties of the threshold contact process (TCP), a process showing an absorbing...
AbstractWe investigate an epidemic spreading process by means of a computational simulation on the A...
Abstract In this work we study the critical behavior of the absorbing state phase transition exhibit...
AbstractIn this work we study the critical behavior of the absorbing state phase transition exhibite...
We present an analysis of the quasistationary (QS) state of the contact process (CP) on annealed sca...
We study the absorbing state phase transition in the contact process on the Weighted Planar Stochast...
We study nonequilibrium phase transitions of reaction-diffusion systems defined on randomly diluted ...
We present an analysis of the quasistationary (QS) state of the contact process (CP) on annealed sca...
AbstractWe investigate the critical behavior of a stochastic lattice model describing a General Epid...
We present an analysis of the quasistationary (QS) state of the contact process (CP) on annealed sca...
Much of the research on the behavior of the SIS model on networks has concerned the infinite size li...
AbstractWe investigate the critical behavior of a stochastic lattice model describing a General Epid...
In a recent work, a new numerical method (the lifespan method) has been introduced to study the crit...
We investigate the properties of the threshold contact process (TCP), a process showing an absorbing...
We investigate the properties of the threshold contact process (TCP), a process showing an absorbing...
We investigate the properties of the threshold contact process (TCP), a process showing an absorbing...
AbstractWe investigate an epidemic spreading process by means of a computational simulation on the A...
Abstract In this work we study the critical behavior of the absorbing state phase transition exhibit...
AbstractIn this work we study the critical behavior of the absorbing state phase transition exhibite...
We present an analysis of the quasistationary (QS) state of the contact process (CP) on annealed sca...
We study the absorbing state phase transition in the contact process on the Weighted Planar Stochast...
We study nonequilibrium phase transitions of reaction-diffusion systems defined on randomly diluted ...
We present an analysis of the quasistationary (QS) state of the contact process (CP) on annealed sca...
AbstractWe investigate the critical behavior of a stochastic lattice model describing a General Epid...
We present an analysis of the quasistationary (QS) state of the contact process (CP) on annealed sca...
Much of the research on the behavior of the SIS model on networks has concerned the infinite size li...
AbstractWe investigate the critical behavior of a stochastic lattice model describing a General Epid...