Events Determine Spreading Patterns: Information Transmission via Internal and External Influences on Social Networks
arXiv:1503.07630 · doi:10.1088/1367-2630/17/11/113045
Abstract
Recently, information transmission models motivated by the classical epidemic propagation, have been applied to a wide-range of social systems, generally assume that information mainly transmits among individuals via peer-to-peer interactions on social networks. In this paper, we consider one more approach for users to get information: the out-of-social-network influence. Empirical analyses of eight typical events' diffusion on a very large micro-blogging system, \emph{Sina Weibo}, show that the external influence has significant impact on information spreading along with social activities. In addition, we propose a theoretical model to interpret the spreading process via both internal and external channels, considering three essential properties: (i) memory effect; (ii) role of spreaders; and (iii) non-redundancy of contacts. Experimental and mathematical results indicate that the information indeed spreads much quicker and broader with mutual effects of the internal and external influences. More importantly, the present model reveals that the event characteristic would highly determine the essential spreading patterns once the network structure is established. The results may shed some light on the in-depth understanding of the underlying dynamics of information transmission on real social networks.
References in corpus (6)
- Epidemic processes in complex networks
- Robust dynamic classes revealed by measuring the response function of a social system
- Thresholds for epidemic spreading in networks
- Novelty and Collective Attention
- Reconstructing propagation networks with natural diversity and identifying hidden sources
- Spreading of sexually transmitted diseases in heterosexual populations
Cited by in corpus (9)
- A model of spreading of sudden events on social networks
- Can complex networks describe the urban and rural tropospheric O3 dynamics?
- Spreading dynamics of information on online social networks
- Homophily on social networks changes evolutionary advantage in competitive information diffusion
- Checking complex networks indicators in search of singular episodes of the photochemical smog
- Improving graph-based detection of singular events for photochemical smog agents
- A sliding window-based algorithm for faster transformation of time series into complex networks
- A generalized voter model with time-decaying memory on a multilayer network
- Effects of topological structure and destination selection strategies on agent dynamics in complex networks