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September 1, 1998Combinatorics Probability Computing853 citationsOpen Access

The Size of the Giant Component of a Random Graph with a Given Degree Sequence

MMMichael MolloyBRBruce Reed

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Abstract

Given a sequence of nonnegative real numbers λ0, λ1, … that sum to 1, we consider a random graph having approximately λin vertices of degree i. In 12 the authors essentially show that if sum i(i−2)λi>0 then the graph a.s. has a giant component, while if sum i(i−2)λi<0 then a.s. all components in the graph are small. In this paper we analyse the size of the giant component in the former case, and the structure of the graph formed by deleting that component. We determine ε, λ′0, λ′1 … such that a.s. the giant component, C, has εn+o(n) vertices, and the structure of the graph remaining after deleting C is basically that of a random graph with n′=n−mid Cmid vertices, and with λ′in′ of them of degree i.

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Cite This Study

Molloy et al. (1998) studied this question.

synapsesocial.com/papers/6a0da4721e1a6dfdb4bab4f4https://doi.org/10.1017/s0963548398003526
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