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DTSTART:19700308T020000
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DTSTAMP:20211207T055342Z
LOCATION:240-241-242
DTSTART;TZID=America/Chicago:20211117T153000
DTEND;TZID=America/Chicago:20211117T170000
UID:submissions.supercomputing.org_SC21_sess250@linklings.com
SUMMARY:Gordon Bell Prize Finalist Session 2
DESCRIPTION:ACM Gordon Bell Finalist, Awards Presentation\n\nThis is the s
 econd of two sessions where ACM Gordon Bell Prize Finalists will present t
 heir papers. The Gordon Bell Prize is awarded each year to recognize outst
 anding achievement in high-performance computing. The purpose of the award
  is to track the progress over time of parallel computing, with particular
  emphasis on rewarding innovation in applying high-performance computing t
 o applications in science, engineering, and large-scale data analytics.\n\
 nClosing the “Quantum Supremacy” Gap: Achieving Real-Time Simulation of a 
 Random Quantum Circuit Using a New Sunway Supercomputer\n\nFu, SWQSIM\n\nW
 e develop a high-performance tensor-based simulator for random quantum cir
 cuits (RQCs) on the new Sunway supercomputer. Our major innovations includ
 e: a near-optimal slicing scheme, and a path-optimization strategy that co
 nsiders both complexity and compute density; a three-level parallelization
  sc...\n\n---------------------\nExtreme-Scale Ab Initio Quantum Raman Spe
 ctra Simulations on the Leadership HPC System in China\n\nShang, Li, Zhang
 , Zhang, Fu...\n\nRaman spectroscopy provides chemical and compositional i
 nformation that can serve as a structural fingerprint for various material
 s. Therefore, simulations of Raman spectra, including both quantum perturb
 ation analyses and ground-state calculations, are of significant interest.
  Highly-accurate full ...\n\n---------------------\nBillion Atom Molecular
  Dynamics Simulations of Carbon at Extreme Conditions and Experimental Tim
 e and Length Scales\n\nCong, Willman, Moore, Belonoshko, Gayatri...\n\nBil
 lion atom molecular dynamics (MD) using quantum-accurate machine-learned S
 pectral Neighbor Analysis Potential (SNAP) observed long-sought high press
 ure BC8 phase of carbon at extreme pressure (12 Mbar) and temperature (5,0
 00 K). 24-hour, 4650-node production simulation on OLCF Summit demonstrate
 d...\n\n\nTag: Accelerator-based Architectures, Computational Science, Ext
 reme Scale Computing, Performance, Quantum Computing, Scientific Computing
 \n\nRegistration Category: Tech Program Reg Pass
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