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7篇 您的检索式:作者名="H.Eugene"
    题名 作者 年代 出处 被引量
1History-dependent percolation on multiplex networks显示文摘The structure of interconnected systems and its impact on the system dynamics is a much-studied cross-disciplinary topic.Although various critical phenomena have been found in different models;study of the connections between different percolation transitions is still lacking.Here we propose a unified framework to study the origins of the discontinuous transitions of the percolation process on interacting networks.The model evolves in generations with the result of the present percolation depending on the previous state,and thus is history-dependent.Both theoretical analysis and Monte Carlo simulations reveal that the nature of the transition remains the same at firdte generations but exhibits an abrupt change for the infinite generation.We use brain functional correlation and morphological similarity data to show that our model also provides a general method to explore the network structure and can contribute to many practical applications,such as detecting the abnormal structures of human brain networks.Ming Li Linyuan Lu Youjin Deng Mao-Bin Hu Hao Wang Matus Medo H.Eugene Stanley 2020National Science Review2020,7,8:3
2Multifractal detrended fluctuation analysis of nonstationary time series显示文摘Jan W. Kantelhardt Stephan A. Zschiegner Eva Koscielny-Bunde Shlomo Havlin Armin Bunde H.Eugene Stanley 2002Physica A: Statistical Mechanics and its Applications2002,,1:1
3Multifractal detrended fluctuation analysis of nonstationary time series显示文摘Jan W. Kantelhardt Stephan A. Zschiegner Eva Koscielny-Bunde Shlomo Havlin Armin Bunde H.Eugene Stanley 2002Physica A: Statistical Mechanics and its Applications2002,,1:1
4Multifractal detrended fluctuation analysis of nonstationary time series显示文摘Jan W. Kantelhardt Stephan A. Zschiegner Eva Koscielny-Bunde Shlomo Havlin Armin Bunde H.Eugene Stanley 2002Physica A: Statistical Mechanics and its Applications2002,,1:1
5Multifractal detrended fluctuation analysis of nonstationary time series显示文摘Jan W. Kantelhardt Stephan A. Zschiegner Eva Koscielny-Bunde Shlomo Havlin Armin Bunde H.Eugene Stanley 2002Physica A: Statistical Mechanics and its Applications2002,,1:1
6Spatiotemporal Input Control:Leveraging Temporal Variation in Network Dynamics显示文摘The number of available control sources is a limiting factor to many network control tasks.A lack of input sources can result in compromised controllability and/or sub-optimal network performance,as noted in engineering applications such as the smart grids.The mechanism can be explained by a linear timeinvariant model,where structural controllability sets a lower bound on the number of required sources.Inspired by the ubiquity of time-varying topologies in the real world,we propose the strategy of spatiotemporal input control to overcome the source-related limit by exploiting temporal variation of the network topology.We theoretically prove that under this regime,the required number of sources can always be reduced to 2.It is further shown that the cost of control depends on two hyperparameters,the numbers of sources and intervals,in a trade-off fashion.As a demonstration,we achieve controllability over a complex network resembling the nervous system of Caenorhabditis elegans using as few as 6%of the sources predicted by a static control model.This example underlines the potential of utilizing topological variation in complex network control problems.Yihan Lin Jiawei Sun Guoqi Li Gaoxi Xiao Changyun Wen Lei Deng H.Eugene Stanley 2022IEEE/CAA Journal of Automatica Sinica2022,9,4:0
7Experimental tests for a liquid-liquid critical point in water显示文摘Water is a fascinating material.Its composition is simple—one oxygen and two hydrogen atoms—but its chemistry and physics are extremely complex and exhibit 75 documented anomalies.Although these anomalies and their molecular origin are not completely understood,we know that hydrogen bonds play key roles in all of the phases of water.Moreover,there is experimental evidence that the polymorphism of the ice structure extends into the liquid phase and is associated with a liquid-liquid coexistence line.This is currently a topic of great interest in water research because there are indications that the end point of the coexistence line corresponds to a second critical point inside the supercooled liquid regime.We examine the recent progress in understanding water anomalies and the liquid-liquid phase transition hypothesis,including the results of recent experimental work and molecular simulations of both bulk and confined water.We examine experimental results that test whether the behavior of liquid water is consistent with the'liquid polymorphism'hypothesis that liquid water can exist in two distinct phases of differing densities.We also examine recent research on the anomalies of nanoconfined water and,in particular,on water in biological environments.We find that the concept of liquid polymorphism can also describe the properties of other liquids that have two characteristic length scales.Domenico Mallamace Carmelo Corsaro Francesco Mallamace H.Eugene Stanley 2020Science China(Physics,Mechanics & Astronomy)2020,63,12:0
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