Revealing New Physics With Petascale and Beyond Computational Resources
FOCUS · S22 ·
Presentations
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Scalable real space pseudopotential density functional codes for materials in the exascale regime
ORAL
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Authors
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Charles Lena
- University of Texas at Austin
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James Chelikowsky
- University of Texas at Austin
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Grady Schofield
- University of Texas at Austin
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Ariel Biller
- Weizmann Institute of Science
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Leeor Kronik
- Weizmann Institute of Science
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Yousef Saad
- University of Minnesota
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Jack Deslippe
- National Energy Research Scientific Computing Center
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Large DFT: to 100K atoms and beyond.
ORAL
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Authors
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Jonathan Mullin
- Army Research Laboratory
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Real Space Multigrid (RMG) Open Source Software Suite for Multi-Petaflops Electronic Structure Calculations
ORAL
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Authors
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Emil Briggs
- North Carolina State University
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Miroslav Hodak
- North Carolina State University
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Wenchang Lu
- North Carolina State University
- North Carolina State university
- North Carolina State University; Oak Ridge National Lab
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Jerry Bernholc
- North Carolina State University
- North Carolina State University; Oak Ridge National Lab
- North Carolina State Univ
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Yan Li
- North Carolina State University
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Understanding Strongly Correlated Materials thru Theory Algorithms and High Performance Computers
COFFEE_KLATCH · Invited
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Authors
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Gabriel Kotliar
- Rutgers University
- Rutgers University and Brookhaven National Laboratories
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Large-scale quantum transport calculations for electronic devices with over ten thousand atoms
ORAL
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Authors
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Wenchang Lu
- North Carolina State University
- North Carolina State university
- North Carolina State University; Oak Ridge National Lab
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Yan Lu
- North Carolina State University
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Zhongcan Xiao
- North Carolina State University
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Miro Hodak
- North Carolina State University
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Emil Briggs
- North Carolina State University
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Jerry Bernholc
- North Carolina State University
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Implementing Parquet equations using HPX
ORAL
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Authors
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Samuel Kellar
- Department of Physics and Astronomy, Louisiana State University, Baton Rouge, Louisiana
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Bibek Wagle
- Department of Computer Science and Engineering, Louisiana State University, Baton Rouge, Louisiana
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Shuxiang Yang
- Department of Physics and Astronomy, Louisiana State University, Baton Rouge, Louisiana
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Ka-Ming Tam
- Department of Physics and Astronomy, Louisiana State University, Baton Rouge, Louisiana
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Hartmut Kaiser
- Center of Computation and Technology, Louisiana State University, Baton Rouge, Louisiana
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Juana Moreno
- Department of Physics and Astronomy, Louisiana State University, Baton Rouge, Louisiana
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Mark Jarrell
- Department of Physics and Astronomy, Louisiana State University, Baton Rouge, Louisiana
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\textbf{Asperities, Crack Front Waves and Crack Self Healing}
ORAL
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Authors
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Pankaj Rajak
- Univ of Southern California
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Rajiv Kalia
- Univ of Southern California
- Collaboratory for Advanced Computing and Simulations
- University of Southern California
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Aiichiro Nakano
- Univ of Southern California
- Collaboratory for Advanced Computing and Simulations
- University of Southern California
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Priya Vashisthta
- Univ of Southern California
- Collaboratory for Advanced Computing and Simulations
- University of Southern California
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Biophysical Discovery through the Lens of a Computational Microscope
COFFEE_KLATCH · Invited
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Authors
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Rommie Amaro
- University of California, San Diego
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Multiscale Dynamics in Soft-Matter Systems: Enzyme Catalysis, Sec-Facilitated Protein Translocation, and Ion-Conduction in Polymers.
COFFEE_KLATCH · Invited
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Authors
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Thomas Miller III
- California Institute of Technology
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