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The Structural Virality of Online Diffusion

人气 复制 计算机科学 多样性(政治) 扩散 病毒式营销 数据科学 计量经济学 万维网 社会化媒体 心理学 社会学 数学 统计 社会心理学 物理 热力学 人类学
作者
Sharad Goel,Ashton Anderson,Jake M. Hofman,Duncan J. Watts
出处
期刊:Management Science [Institute for Operations Research and the Management Sciences]
卷期号:62 (1): 180-196 被引量:647
标识
DOI:10.1287/mnsc.2015.2158
摘要

Viral products and ideas are intuitively understood to grow through a person-to-person diffusion process analogous to the spread of an infectious disease; however, until recently it has been prohibitively difficult to directly observe purportedly viral events, and thus to rigorously quantify or characterize their structural properties. Here we propose a formal measure of what we label “structural virality” that interpolates between two conceptual extremes: content that gains its popularity through a single, large broadcast and that which grows through multiple generations with any one individual directly responsible for only a fraction of the total adoption. We use this notion of structural virality to analyze a unique data set of a billion diffusion events on Twitter, including the propagation of news stories, videos, images, and petitions. We find that across all domains and all sizes of events, online diffusion is characterized by surprising structural diversity; that is, popular events regularly grow via both broadcast and viral mechanisms, as well as essentially all conceivable combinations of the two. Nevertheless, we find that structural virality is typically low, and remains so independent of size, suggesting that popularity is largely driven by the size of the largest broadcast. Finally, we attempt to replicate these findings with a model of contagion characterized by a low infection rate spreading on a scale-free network. We find that although several of our empirical findings are consistent with such a model, it fails to replicate the observed diversity of structural virality, thereby suggesting new directions for future modeling efforts. This paper was accepted by Lorin Hitt, information systems.
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