activity
20022004
most citedSandpile on Scale-Free Networks

256 citations · 359 across the 6 of their papers we have counts for

collaborators

6 papers

q-bio.MN2004

Lethality and synthetic lethality in the genome-wide metabolic network of Escherichia coli

C. -M. Ghim, K. -I. Goh, B. Kahng

Recent genomic analyses on the cellular metabolic network show that reaction flux across enzymes are diverse and exhibit power-law behavior in its distribution. While one may guess…

cond-mat.stat-mech200481 cited

Sandpile avalanche dynamics on scale-free networks

D. -S. Lee, K. -I. Goh, B. Kahng +1

Avalanche dynamics is an indispensable feature of complex systems. Here we study the self-organized critical dynamics of avalanches on scale-free networks with degree exponent

cond-mat.stat-mech2003

On the evolution of scale-free graphs

D. -S. Lee, K. -I. Goh, B. Kahng +1

We study the evolution of random graphs where edges are added one by one between pairs of weighted vertices so that resulting graphs are scale-free with the degree exponent . We…

q-bio.MN20032 cited

Evolution of the Protein Interaction Network of Budding Yeast: Role of the Protein Family Compatibility Constraint

K. -I. Goh, B. Kahng, D. Kim

Understanding of how protein interaction networks (PIN) of living organisms have evolved or are organized can be the first stepping stone in unveiling how life works on a fundament…

cond-mat.stat-mech2003256 cited

Sandpile on Scale-Free Networks

K. -I. Goh, D. -S. Lee, B. Kahng +1

We investigate the avalanche dynamics of the Bak-Tang-Wiesenfeld (BTW) sandpile model on scale-free (SF) networks, where threshold height of each node is distributed heterogeneousl…

cond-mat.stat-mech200220 cited

Probabilistic prediction in scale-free networks: Diameter changes

J. -H. Kim, K. -I. Goh, B. Kahng +1

In complex systems, responses to small perturbations are too diverse to predict how much they would be definitely, and then such diverse responses can be predicted in a probabilist…