Single to double mill small noise transition via semi-Lagrangian finite volume methods
File(s)revised.pdf (4.21 MB)
Accepted version
Author(s)
Carrillo, JA
Klar, A
Roth, A
Type
Journal Article
Date Issued
2016-04-06
Date Acceptance
2016-04-01
Citation
Communications in Mathematical Sciences, 2016, 14 (4), pp.1111-1136
ISSN
1945-0796
Publisher
International Press
Start Page
1111
End Page
1136
Journal / Book Title
Communications in Mathematical Sciences
Volume
14
Issue
4
Copyright Statement
© 2016 International Press of Boston, Inc. All rights reserved.
Sponsor
The Royal Society
Engineering & Physical Science Research Council (E
Grant Number
WM120001
EP/K008404/1
Subjects
Science & Technology
Physical Sciences
Mathematics, Applied
Mathematics
Self-propelled interacting particles
mean-field equations
semi-Lagrangian method
finite volume method
milling solution
phase transition
FOKKER-PLANCK EQUATION
SELF-PROPELLED PARTICLES
MEAN-FIELD LIMIT
COLLECTIVE BEHAVIOR
VLASOV EQUATION
FISH SCHOOLS
ORIENTATION DYNAMICS
FLOCKING DYNAMICS
DRIVEN PARTICLES
PHASE-TRANSITION
Applied Mathematics
0101 Pure Mathematics
0102 Applied Mathematics
1502 Banking, Finance And Investment
Publication Status
Published
Date Publish Online
2016-04-06