H-NESSi uses HODLR compression of Green's functions plus DLR for initial states to reduce Kadanoff-Baym equation propagation from cubic to lower scaling while preserving controllable accuracy.
Kennes, Martin Claassen, Simon Gerber, James W
2 Pith papers cite this work. Polarity classification is still indexing.
years
2026 2verdicts
UNVERDICTED 2representative citing papers
Dielectric screening makes Volkov dressing dominate Floquet effects in below-band-gap driven van der Waals semiconductors, enabling extraction of lower bounds on the real dielectric function from polarization-dependent sideband intensities and revealing nonlinear high-order sidebands plus delayed ev
citing papers explorer
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H-NESSi: The Hierarchical Non-Equilibrium Systems Simulation package
H-NESSi uses HODLR compression of Green's functions plus DLR for initial states to reduce Kadanoff-Baym equation propagation from cubic to lower scaling while preserving controllable accuracy.
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Dielectric Screening in Electromagnetic Dressing of Semiconductors
Dielectric screening makes Volkov dressing dominate Floquet effects in below-band-gap driven van der Waals semiconductors, enabling extraction of lower bounds on the real dielectric function from polarization-dependent sideband intensities and revealing nonlinear high-order sidebands plus delayed ev