Intrinsically noisy mechanisms drive most physical, biological and economic phenomena. Frequently, the system's state influences the driving noise intensity (multiplicative feedback). These phenomena are often modelled using stochastic differential equations, which can be interpreted according to various conventions (for example, Itô calculus and Stratonovich calculus), leading to qualitatively different solutions. Thus, a stochastic differential equation-convention pair must be determined from the available experimental data before being able to predict the system's behaviour under new conditions. Here we experimentally demonstrate that the convention for a given system may vary with the operational conditions: we show that a noisy electri...
In this paper we examine two specific models of dynamical systems in which noise plays a central rol...
Noisy dynamical models are employed to describe a wide range of phenomena. Since exact modeling of t...
In this monograph, we have provided a general framework of how noise can arise and be incorporated ...
Intrinsically noisy mechanisms drive most physical, biological and economic phenomena. Frequently, t...
Cataloged from PDF version of article.Intrinsically noisy mechanisms drive most physical, biological...
It is shown that a digital simulation of a noise induced phase transition using an algorithm consist...
Stochastic components in a feedback loop introduce state behaviors that are fundamentally different ...
We discuss intrinsic noise effects in stochastic multiplicative-noise partial differential equations...
We look at the behavior of biological oscillators, specifically analyzing a genetic circuit that has...
We look at the behavior of biological oscillators, specifically analyzing a genetic circuit that has...
We look at the behavior of biological oscillators, specifically analyzing a genetic circuit that has...
We study the dynamics of an oscillatory system with pulse delayed feedback and noise of two types: i...
We study the dynamics of an oscillatory system with pulse delayed feedback and noise of two types: i...
We study the dynamics of an oscillatory system with pulse delayed feedback and noise of two types: i...
In this monograph, we have provided a general framework of how noise can arise and be incorporated ...
In this paper we examine two specific models of dynamical systems in which noise plays a central rol...
Noisy dynamical models are employed to describe a wide range of phenomena. Since exact modeling of t...
In this monograph, we have provided a general framework of how noise can arise and be incorporated ...
Intrinsically noisy mechanisms drive most physical, biological and economic phenomena. Frequently, t...
Cataloged from PDF version of article.Intrinsically noisy mechanisms drive most physical, biological...
It is shown that a digital simulation of a noise induced phase transition using an algorithm consist...
Stochastic components in a feedback loop introduce state behaviors that are fundamentally different ...
We discuss intrinsic noise effects in stochastic multiplicative-noise partial differential equations...
We look at the behavior of biological oscillators, specifically analyzing a genetic circuit that has...
We look at the behavior of biological oscillators, specifically analyzing a genetic circuit that has...
We look at the behavior of biological oscillators, specifically analyzing a genetic circuit that has...
We study the dynamics of an oscillatory system with pulse delayed feedback and noise of two types: i...
We study the dynamics of an oscillatory system with pulse delayed feedback and noise of two types: i...
We study the dynamics of an oscillatory system with pulse delayed feedback and noise of two types: i...
In this monograph, we have provided a general framework of how noise can arise and be incorporated ...
In this paper we examine two specific models of dynamical systems in which noise plays a central rol...
Noisy dynamical models are employed to describe a wide range of phenomena. Since exact modeling of t...
In this monograph, we have provided a general framework of how noise can arise and be incorporated ...