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DTSTART:19700308T020000
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DTSTAMP:20210402T160548Z
LOCATION:Track 2
DTSTART;TZID=America/New_York:20201117T130000
DTEND;TZID=America/New_York:20201117T143000
UID:submissions.supercomputing.org_SC20_sess159@linklings.com
SUMMARY:Molecular Dynamics and Material Science
DESCRIPTION:Paper\n\nEvaluation of a Minimally Synchronous Algorithm for 2
 :1 Octree Balance\n\nSuh, Isaac\n\nThe p4est library implements octree-bas
 ed adaptive mesh refinement (AMR) and has demonstrated parallel scalabilit
 y beyond 100,000 MPI processes in previous weak scaling studies. This work
  focuses on the strong scalability of mesh adaptivity in p4est, where the 
 communication pattern of the existing 2...\n\n---------------------\nCell-
 List based Molecular Dynamics on Many-Core Processors: A Case Study on Sun
 way TaihuLight Supercomputer\n\nDuan, Gao, Zhang, Zhang, Meng...\n\nMolecu
 lar dynamics (MD) simulations are playing an increasingly important role i
 n several research areas. The most frequently used potentials in MD simula
 tions are pair-wise potentials. Due to the memory wall, computing pair-wis
 e potentials on many-core processors is usually memory bounded.\n\nIn this
 ...\n\n---------------------\nDistributed-Memory DMRG via Sparse and Dense
  Parallel Tensor Contractions\n\nLevy, Solomonik, Clark\n\nThe density mat
 rix renormalization group (DMRG) algorithm is a powerful tool for solving 
 eigenvalue problems to model quantum systems. DMRG relies on tensor contra
 ctions and dense linear algebra to compute properties of condensed matter 
 physics systems. However, its efficient parallel implementation...\n\n\nTa
 g: Algorithms, Applications, Sparse Computation\n\nRegistration Category: 
 Tech Program Reg Pass
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