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Showing 1–5 of 5 results
Advanced filters: Author: Tilo Döppner Clear advanced filters
  • Path-integral Monte Carlo (PIMC) techniques are used to simulate thermodynamic properties of warm dense matter but currently suffer from uncontrolled approximations and exponentially scaling computational costs. Here, the authors provide a way to overcome these issues, developing PIMC simulations of warm dense beryllium in agreement with x-ray Thomson scattering.

    • Tobias Dornheim
    • Tilo Döppner
    • Jan Vorberger
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-11
  • Existing methods for temperature estimation of warm dense matter rely on model calculations. Here the authors report a method to extract the temperature of complex materials that is previously only inferred by using model calculations.

    • Tobias Dornheim
    • Maximilian Böhme
    • Jan Vorberger
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-7
  • The first experimental demonstration of saturable absorption in core-electron transitions in aluminium paves the way for investigating warm dense matter, which potentially has an important role in planetary science and the realization of inertial confinement fusion.

    • Bob Nagler
    • Ulf Zastrau
    • Justin S. Wark
    Research
    Nature Physics
    Volume: 5, P: 693-696
  • Heat transport across interfaces can be restricted due to interfacial thermal resistance between different materials. Here, authors find experimental evidence of a significant and enduring heat barrier between two high-energy-density materials that is consistent with interfacial thermal resistance.

    • Cameron H. Allen
    • Matthew Oliver
    • Thomas G. White
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-8