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Nonlocal and Nonadiabatic Time-dependent Pauli Potential

ORAL

Abstract

Time-dependent orbital-free density functional theory (TD-OFDFT) is an efficient ab-initio method for calculating the electronic dynamics of large systems. In comparison to standard TD-DFT, it computes only a single electronic state regardless of system size, but it requires an additional time-dependent Pauli potential term. Based on the frequency-dependent Pauli kernel of the free electron gas, we propose a nonadiabatic and nonlocal Pauli potential as a functional of the time-dependent particle and current densities. Our calculations of the optical spectra of metallic and semiconductor clusters indicate that nonlocal and nonadiabatic TD-OFDFT performs accurately for metallic systems and semiquantitatively for semiconductors. This work opens the door to wide applicability of TD-OFDFT for nonequilibrium electron and electron-nuclear dynamics of materials.

Publication: K. Jiang and M. Pavanello, Physical Review B 103, 10.1103/phys-revb.103.245102 (2021).<br>K. Jiang, X. Shao and M. Pavanello, arXiv:2108.07870 (2021).

Presenters

  • Kaili Jiang

    Rutgers University - Newark

Authors

  • Kaili Jiang

    Rutgers University - Newark

  • Xuecheng Shao

    Rutgers University, Newark, Rutgers University - Newark

  • Michele Pavanello

    Rutgers University, Newark