DocumentCode
2989024
Title
The ultimate bead counter: efficient massively parallel simulation of ballistic deposition
Author
Lubachevsky, Boris D. ; Privman, Vladimir ; Roy, Subhas C.
Author_Institution
AT&T Bell Labs., Murray Hill, NJ, USA
fYear
1995
fDate
14-16 Jun 1995
Firstpage
95
Lastpage
102
Abstract
We simulate ballistic particle deposition wherein a large number of spherical particles are “dropped” vertically over a planar horizontal surface. Upon first contact (with the surface or with a previously deposited particle) each particle stops. This model helps material scientists to study the adsorption and sediment formation. The model is sequential, with particles deposited one by one. We have found an equivalent formulation using a continuous time random process and we simulate the latter in parallel using a method similar to the one previously employed for simulating Ising spins. We augment the parallel algorithm for simulating Ising spins with several techniques aimed at the increase of efficiency of producing the particle configuration and statistics collection. We implement the resulting algorithm on a 16K PE MasPar MP-1 and a 4K PE MasPar MP-2. The parallel code runs on MasPar computers two orders of magnitude faster than an optimized sequential code runs on a fast workstation
Keywords
Ising model; adsorption; atom-surface impact; digital simulation; parallel algorithms; physics computing; sputter deposition; 16K PE MasPar MP-1; 4K PE MasPar MP-2; Ising spins simulation; adsorption; ballistic deposition; continuous time random process; equivalent formulation; massively parallel simulation; material scientists; parallel algorithm; particle configuration; sediment formation; statistics collection; ultimate bead counter; Computational modeling; Computer science; Computer simulation; Concurrent computing; Counting circuits; Educational institutions; Physics; Random processes; Sediments; Statistics;
fLanguage
English
Publisher
ieee
Conference_Titel
Parallel and Distributed Simulation, 1995. (PADS'95), Proceedings., Ninth Workshop on (Cat. No.95TB8096)
Conference_Location
Lake Placid, NY
Print_ISBN
0-8186-7120-3
Type
conf
DOI
10.1109/PADS.1995.404312
Filename
404312
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