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Volumn 8, Issue 8, 2012, Pages 2527-2534

Spontaneous segregation of self-propelled particles with different motilities

Author keywords

[No Author keywords available]

Indexed keywords

BROWNIAN DYNAMICS SIMULATIONS; COLLISION FREQUENCY; DOMAIN STRUCTURE; DRIVING FORCES; NUMBER FLUCTUATIONS; ROD-LIKE PARTICLES; SELF-PROPELLED PARTICLES; TWO-DIMENSION;

EID: 84857308852     PISSN: 1744683X     EISSN: 17446848     Source Type: Journal    
DOI: 10.1039/c2sm06960a     Document Type: Article
Times cited : (219)

References (68)
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    • The actual timestep used for a given iteration is δt/n, where n is initially set to one. We mark an integration error if the force on a rod is such that it will be moved more than 0.6/ n rod diameters, rotated more than 4 σ/n radians, or if the lines representing two rods overlap. Such events are inevitable in Brownian dynamics at high density at any timestep for a sufficiently long run because of the Gaussian noise. If an error is recorded, we revert back to a checkpoint saved every 10,000 timesteps and increment n. We decrement n after 10,000 successful timesteps
    • D. Heyes A. Branka Mol. Phys. 2000 98 1949 1960
    • (2000) Mol. Phys. , vol.98 , pp. 1949-1960
    • Heyes, D.1    Branka, A.2
  • 46
    • 0001713229 scopus 로고
    • in, ed. G. Lindzey and E. Aronson, Addison-Wesley, ch. Collective behaviour: crowds and social movements
    • S. Milgram and H. Toch, in The handbook of social psychology, ed., G. Lindzey, and, E. Aronson, Addison-Wesley, 1969, ch. Collective behaviour: crowds and social movements
    • (1969) The Handbook of Social Psychology
    • Milgram, S.1    Toch, H.2
  • 52
    • 79960467764 scopus 로고    scopus 로고
    • The bands did not break down within our finite simulation time for any of our systems with Pe = 10, but we anticipate that breakdown would eventually occur for sufficiently long simulations
    • A. Wysocki H. Loewen J. Phys.: Condens. Matter 2011 23 284117
    • (2011) J. Phys.: Condens. Matter , vol.23 , pp. 284117
    • Wysocki, A.1    Loewen, H.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.