F eb 2 00 9 How Homophily Affects Learning and Diffusion in Networks ∗
نویسندگان
چکیده
We examine how three different communication processes operating through social networks are affected by homophily – the tendency of individuals to associate with others similar to themselves. Homophily has no effect if messages are broadcast or sent via shortest paths; only connection density matters. In contrast, homophily substantially slows learning based on repeated averaging of neighbors’ information and Markovian diffusion processes such as the Google random surfer model. Indeed, the latter processes are strongly affected by homophily but completely independent of connection density, provided this density exceeds a low threshold. We obtain these results by establishing new results on the spectra of large random graphs and relating the spectra to homophily. We conclude by checking the theoretical predictions using observed high school friendship networks from the Adolescent Health dataset.
منابع مشابه
How Homophily Affects Diffusion and Learning in Networks∗
We examine how diffusion and learning processes are influenced by network properties, focusing on density and homophily – the tendency of agents to associate disproportionately with those sharing similar traits. Homophily does not affect the speed of diffusions that travel along shortest paths; their rate is determined only by the size of the society and the number of links per agent. In contra...
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We examine how three different communication processes operating through social networks are affected by homophily – the tendency of individuals to associate with others similar to themselves. We show that homophily has no effect in settings where messages reach their destinations by shortest paths; only connection density matters. In contrast, homophily substantially slows learning based on re...
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We examine how three different communication processes operating through social networks are affected by homophily – the tendency of individuals to associate with others similar to themselves. Homophily has no effect if messages are broadcast or sent via shortest paths; only network connection density matters. In contrast, homophily substantially slows learning based on repeated averaging of ne...
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