MyJournals Home  

RSS FeedsEntropy, Vol. 21, Pages 86: Information Entropy of Tight-Binding Random Networks with Losses and Gain: Scaling and Universality (Entropy)

 
 

19 january 2019 08:00:35

 
Entropy, Vol. 21, Pages 86: Information Entropy of Tight-Binding Random Networks with Losses and Gain: Scaling and Universality (Entropy)
 


We study the localization properties of the eigenvectors, characterized by their information entropy, of tight-binding random networks with balanced losses and gain. The random network model, which is based on Erdos–Rényi (ER) graphs, is defined by three parameters: the network size N, the network connectivity α , and the losses-and-gain strength γ . Here, N and α are the standard parameters of ER graphs, while we introduce losses and gain by including complex self-loops on all vertices with the imaginary amplitude i γ with random balanced signs, thus breaking the Hermiticity of the corresponding adjacency matrices and inducing complex spectra. By the use of extensive numerical simulations, we define a scaling parameter ξ ≡ ξ ( N , α , γ ) that fixes the localization properties of the eigenvectors of our random network model; such that, when ξ < 0.1 ( 10 < ξ ), the eigenvectors are localized (extended), while the localization-to-delocalization transition occurs for 0.1 < ξ < 10 . Moreover, to extend the applicability of our findings, we demonstrate that for fixed ξ , the spectral properties (characterized by the position of the eigenvalues on the complex plane) of our network model are also universal; i.e., they do not depend on the specific values of the network parameters.


 
86 viewsCategory: Informatics, Physics
 
Entropy, Vol. 21, Pages 87: Parallel Lives: A Local-Realistic Interpretation of `Nonlocal` Boxes (Entropy)
Entropy, Vol. 21, Pages 85: Performance Analysis of a Proton Exchange Membrane Fuel Cell Based Syngas (Entropy)
 
 
blog comments powered by Disqus


MyJournals.org
The latest issues of all your favorite science journals on one page

Username:
Password:

Register | Retrieve

Search:

Physics


Copyright © 2008 - 2024 Indigonet Services B.V.. Contact: Tim Hulsen. Read here our privacy notice.
Other websites of Indigonet Services B.V.: Nieuws Vacatures News Tweets Nachrichten