activity
20222024
most citedImproving dynamic collision frequencies: impacts on dynamic structure factors and stopping powers in warm dense matter

22 citations · 22 across the 5 of their papers we have counts for

collaborators

5 papers

physics.plasm-ph2024

Statistical inference of collision frequencies from x-ray Thomson scattering spectra

Thomas W. Hentschel, Alina Kononov, Andrew D. Baczewski +1

Thomson scattering spectra measure the response of plasma particles to incident radiation. In warm dense matter, which is opaque to visible light, x-ray Thomson scattering (XRTS) e…

physics.comp-ph2024

Reproducibility of real-time time-dependent density functional theory calculations of electronic stopping power in warm dense matter

Alina Kononov, Alexander J. White, Katarina A. Nichols +2

Real-time time-dependent density functional theory (TDDFT) is widely considered to be the most accurate available method for calculating electronic stopping powers from first princ…

physics.ed-ph2023

Quantum Computing, Math, and Physics (QCaMP): Introducing quantum computing in high schools

Megan Ivory, Alisa Bettale, Rachel Boren +9

The nascent but rapidly growing field of Quantum Information Science and Technology has led to an increased demand for skilled quantum workers and an opportunity to build a diverse…

physics.plasm-ph202322 cited

Improving dynamic collision frequencies: impacts on dynamic structure factors and stopping powers in warm dense matter

Thomas W. Hentschel, Alina Kononov, Alexandra Olmstead +3

Simulations and diagnostics of high-energy-density plasmas and warm dense matter rely on models of material response properties, both static and dynamic (frequency-dependent). Here…

cond-mat.mtrl-sci2022

First-principles simulation of light-ion microscopy of graphene

Alina Kononov, Alexandra Olmstead, Andrew D. Baczewski +1

The extreme sensitivity of 2D materials to defects and nanostructure requires precise imaging techniques to verify presence of desirable and absence of undesirable features in the…