most citedFLAIM: A reduced volume ignition model for the compression and thermonuclear burn of spherical fuel capsules

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physics.plasm-ph2025

Correlation function metrology for warm dense matter: Recent developments and practical guidelines

Maximilian Peter Böhme, Willow Martin, Hannah Bellenbaum +13

X-ray Thomson scattering (XRTS) has emerged as a valuable diagnostic for matter under extreme conditions, as it captures the intricate many-body physics of the probed sample. Recen…

physics.plasm-ph2025

Ab initio density functional theory approach to warm dense hydrogen: from density response to electronic correlations

Zhandos A. Moldabekov, Xuecheng Shao, Hannah M. Bellenbaum +5

Understanding the properties of warm dense hydrogen is of key importance for the modeling of compact astrophysical objects and to understand and further optimize inertial confineme…

physics.plasm-ph2025

Static linear density response from X-ray Thomson scattering measurements: a case study of warm dense beryllium

Sebastian Schwalbe, Hannah Bellenbaum, Tilo Döppner +8

Linear response theory is ubiquitous throughout physics and plays a central role in the theoretical description of warm dense matter -- an extreme state that occurs within compact…

physics.plasm-ph2025

Application of a spherically averaged pair potential in \emph{ab initio} path integral Monte Carlo simulations of the warm dense electron gas

Tobias Dornheim, Thomas M. Chuna, Hannah M. Bellenbaum +3

Spherically averaged periodic pair potentials offer the enticing promise to provide accurate results at a drastically reduced computational cost compared to the traditional Ewald s…

physics.plasm-ph2024

Towards Model-free Temperature Diagnostics of Warm Dense Matter from Multiple Scattering Angles

Hannah M. Bellenbaum, Benjamin Bachmann, Dominik Kraus +9

Warm dense matter (WDM) plays an important role in astrophysical objects and technological applications, but the rigorous diagnostics of corresponding experiments is notoriously di…

physics.plasm-ph20244 cited

FLAIM: A reduced volume ignition model for the compression and thermonuclear burn of spherical fuel capsules

Abd Essamade Saufi, Hannah Bellenbaum, Martin Read +5

We present the "First Light Advanced Ignition Model" (FLAIM), a reduced model for the implosion, adiabatic compression, volume ignition and thermonuclear burn of a spherical DT fue…