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20152025
most citedWeighted H-index for identifying influential spreaders

7 citations · 11 across the 6 of their papers we have counts for

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physics.soc-ph2025

As Cities Grow, They Spread Out Rather Than Rise

Peiran Zhang, Fabiano L. Ribeiro, Liang Gao +5

Cities and settlements are a global phenomenon, and their continued expansion is fundamentally transforming patterns of resource demand. This transformation is reflected in growing…

physics.soc-ph2018

Local Articulation Points in Complex Networks

Senbin Yu, Liang Gao, Rongqiu Song

An articulation point (AP) is any node whose removal increases the number of connected components of a graph. There is no doubt that this kind of node which occupies a non-ignorabl…

physics.soc-ph2018★ 3 cited

Finding the proper node ranking method for complex networks

Senbin Yu, Liang Gao, Yi-Fan Wang

Ranking node importance is crucial in understanding network structure and function on complex networks. Degree, h-index and coreness are widely used, but which one is more proper t…

physics.soc-ph2017★ 7 cited

Weighted H-index for identifying influential spreaders

Senbin Yu, Liang Gao, Yi-Fan Wang +3

Spreading is a ubiquitous process in the social, biological and technological systems. Therefore, identifying influential spreaders, which is important to prevent epidemic spreadin…

physics.soc-ph2017

Switch between critical percolation modes in city traffic dynamics

Guanwen Zeng, Daqing Li, Shengmin Guo +4

Percolation transition is widely observed in networks ranging from biology to engineering. While much attention has been paid to network topologies, studies rarely focus on critica…

physics.soc-ph2015

Traffic incident analysis on urban arterials using ESE: A method for moderate length of time window

Zhen-zhen Yang, Liang Gao, Zi-you Gao +2

Moderate length of time window can get the best accurate result in detecting the key incident time using extended spectral envelope. This paper presents a method to calculate the m…