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physics.comp-ph2026

Accelerating finite-element-based projector augmented-wave density functional theory calculations with scalable GPU-centric computational methods

Kartick Ramakrishnan, Phani Motamarri

Accurate large-scale Kohn-Sham density functional theory (DFT) calculations are essential for modeling complex material systems, including interfaces, defects, nanoclusters, and tw…

physics.comp-ph2026

Residual-based Chebyshev filtered subspace iteration for sparse Hermitian eigenvalue problems tolerant to inexact matrix-vector products

Nikhil Kodali, Kartick Ramakrishnan, Phani Motamarri

Chebyshev Filtered Subspace Iteration (ChFSI) is widely used for computing a small subset of extremal eigenpairs from large matrices, particularly when the eigenpairs must be compu…

physics.comp-ph2025

Matrix-free algorithms for fast ab initio calculations on distributed CPU architectures using finite-element discretization

Gourab Panigrahi, Phani Motamarri

Finite-element (FE) discretisations have emerged as a powerful real-space alternative to large-scale Kohn-Sham density functional theory (DFT) calculations, offering systematic con…

physics.comp-ph2024

Fast and scalable finite-element based approach for density functional theory calculations using projector-augmented wave method

Kartick Ramakrishnan, Sambit Das, Phani Motamarri

In this work, we present a computationally efficient methodology that utilizes a local real-space formulation of the projector augmented wave (PAW) method discretized with a finite…