TY - JOUR
T1 - Motion by mean curvature from Glauber-Kawasaki dynamics
AU - Funaki, Tadahisa
AU - Tsunoda, Kenkichi
N1 - Publisher Copyright:
Copyright © 2018, The Authors. All rights reserved.
Copyright:
Copyright 2020 Elsevier B.V., All rights reserved.
PY - 2018/12/25
Y1 - 2018/12/25
N2 - We study the hydrodynamic scaling limit for the Glauber-Kawasaki dynamics. It is known that, if the Kawasaki part is speeded up in a diffusive space-time scaling, one can derive the Allen-Cahn equation which is a kind of the reaction-diffusion equation in the limit. This paper concerns the scaling that the Glauber part, which governs the creation and annihilation of particles, is also speeded up but slower than the Kawasaki part. Under such scaling, we derive directly from the particle system the motion by mean curvature for the interfaces separating sparse and dense regions of particles as a combination of the hydrodynamic and sharp interface limits.MSC Codes Primary 60K35, Secondary 82C22, 74A50
AB - We study the hydrodynamic scaling limit for the Glauber-Kawasaki dynamics. It is known that, if the Kawasaki part is speeded up in a diffusive space-time scaling, one can derive the Allen-Cahn equation which is a kind of the reaction-diffusion equation in the limit. This paper concerns the scaling that the Glauber part, which governs the creation and annihilation of particles, is also speeded up but slower than the Kawasaki part. Under such scaling, we derive directly from the particle system the motion by mean curvature for the interfaces separating sparse and dense regions of particles as a combination of the hydrodynamic and sharp interface limits.MSC Codes Primary 60K35, Secondary 82C22, 74A50
KW - Allen-Cahn equation
KW - Glauber-Kawasaki dynamics
KW - Hydrodynamic limit
KW - Motion by mean curvature
KW - Sharp interface limit
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M3 - Article
AN - SCOPUS:85095149061
JO - Nuclear Physics A
JF - Nuclear Physics A
SN - 0375-9474
ER -