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Applying the Roofline Performance Model to the Intel Xeon Phi Knights Landing Processor.

, , , , , , , , , and . ISC Workshops, volume 9945 of Lecture Notes in Computer Science, page 339-353. (2016)

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Two-step perfectly matched layer for arbitrary-order pseudo-spectral analytical time-domain methods., , and . Comput. Phys. Commun., (2019)Applying the Roofline Performance Model to the Intel Xeon Phi Knights Landing Processor., , , , , , , , , and . ISC Workshops, volume 9945 of Lecture Notes in Computer Science, page 339-353. (2016)An efficient and portable SIMD algorithm for charge/current deposition in Particle-In-Cell codes., , , , and . Comput. Phys. Commun., (2017)A generalized massively parallel ultra-high order FFT-based Maxwell solver., , and . Comput. Phys. Commun., (2019)From Compact Plasma Particle Sources to Advanced Accelerators with Modeling at Exascale., , , , , , , , , and 14 other author(s). CoRR, (2023)A hybrid nodal-staggered pseudo-spectral electromagnetic particle-in-cell method with finite-order centering., , , , , , , and . Comput. Phys. Commun., (2022)Porting WarpX to GPU-accelerated platforms., , , , , , , , , and 13 other author(s). CoRR, (2021)Ultrahigh-order Maxwell solver with extreme scalability for electromagnetic PIC simulations of plasmas., and . Comput. Phys. Commun., (2018)Detailed analysis of the effects of stencil spatial variations with arbitrary high-order finite-difference Maxwell solver., and . Comput. Phys. Commun., (2016)Pushing the Frontier in the Design of Laser-Based Electron Accelerators with Groundbreaking Mesh-Refined Particle-In-Cell Simulations on Exascale-Class Supercomputers., , , , , , , , , and 6 other author(s). SC, page 3:1-3:12. IEEE, (2022)