A derivation and scalable implementation of the synchronous parallel kinetic Monte Carlo method for simulating long-time dynamics

نویسندگان

  • Hye Suk Byun
  • Mohamed Y. El-Naggar
  • Rajiv K. Kalia
  • Aiichiro Nakano
  • Priya Vashishta
چکیده

KineticMonte Carlo (KMC) simulations are used to study long-time dynamics of awide variety of systems. Unfortunately, the conventional KMC algorithm is not scalable to larger systems, since its time scale is inversely proportional to the simulated system size. A promising approach to resolving this issue is the synchronous parallel KMC (SPKMC) algorithm, which makes the time scale size-independent. This paper introduces a formal derivation of the SPKMC algorithm based on local transition-state and timedependent Hartree approximations, aswell as its scalable parallel implementation based on a dual linkedlist cell method. The resulting algorithm has achieved a weak-scaling parallel efficiency of 0.935 on 1024 Intel Xeon processors for simulating biological electron transfer dynamics in a 4.2 billion-heme system, as well as decent strong-scaling parallel efficiency. The parallel code has been used to simulate a lattice of cytochrome complexes on a bacterial-membrane nanowire, and it is broadly applicable to other problems such as computational synthesis of new materials. © 2017 Elsevier B.V. All rights reserved.

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عنوان ژورنال:
  • Computer Physics Communications

دوره 219  شماره 

صفحات  -

تاریخ انتشار 2017