Research paperExperimental CharacterizationComputational AimdDiffraction of helium and hydrogen atoms through single-layer grapheneCarina Kanitz, Jakob Bühler, Vladimír Zobač, Joseph J. Robinson et al.2025·10.1126/science.adx5679·arXiv:2412.02360AbstractWe diffract helium and atomic hydrogen at kiloelectronvolt energies through free-standing single-layer graphene and observe coherent scattering. Time-dependent density functional theory molecular dynamics simulations are used to model atom–graphene interactions, momentum transfer, and energy loss.Read more
Free-standing polycrystalline single-layer graphene used as a transmission grating for atomic diffraction experiments.1 characterization4 properties2 figuresExperimentalCStudied MaterialExpand
Graphene lattice used in time-dependent DFT molecular dynamics simulations of He and H transmission.No measurements recordedSimulatedCStudied MaterialExpand
Research paperExperimental CharacterizationComputational AimdDiffraction of helium and hydrogen atoms through single-layer grapheneCarina Kanitz, Jakob Bühler, Vladimír Zobač, Joseph J. Robinson et al.2025·10.1126/science.adx5679·arXiv:2412.02360AbstractWe diffract helium and atomic hydrogen at kiloelectronvolt energies through free-standing single-layer graphene and observe coherent scattering. Time-dependent density functional theory molecular dynamics simulations are used to model atom–graphene interactions, momentum transfer, and energy loss.Read more
Free-standing polycrystalline single-layer graphene used as a transmission grating for atomic diffraction experiments.1 characterization4 properties2 figuresExperimentalCStudied MaterialExpand
Graphene lattice used in time-dependent DFT molecular dynamics simulations of He and H transmission.No measurements recordedSimulatedCStudied MaterialExpand
Research paperExperimental CharacterizationComputational AimdDiffraction of helium and hydrogen atoms through single-layer grapheneCarina Kanitz, Jakob Bühler, Vladimír Zobač, Joseph J. Robinson et al.2025·10.1126/science.adx5679·arXiv:2412.02360AbstractWe diffract helium and atomic hydrogen at kiloelectronvolt energies through free-standing single-layer graphene and observe coherent scattering. Time-dependent density functional theory molecular dynamics simulations are used to model atom–graphene interactions, momentum transfer, and energy loss.Read more
Free-standing polycrystalline single-layer graphene used as a transmission grating for atomic diffraction experiments.1 characterization4 properties2 figuresExperimentalCStudied MaterialExpand
Graphene lattice used in time-dependent DFT molecular dynamics simulations of He and H transmission.No measurements recordedSimulatedCStudied MaterialExpand
Research paperExperimental CharacterizationComputational AimdDiffraction of helium and hydrogen atoms through single-layer grapheneCarina Kanitz, Jakob Bühler, Vladimír Zobač, Joseph J. Robinson et al.2025·10.1126/science.adx5679·arXiv:2412.02360AbstractWe diffract helium and atomic hydrogen at kiloelectronvolt energies through free-standing single-layer graphene and observe coherent scattering. Time-dependent density functional theory molecular dynamics simulations are used to model atom–graphene interactions, momentum transfer, and energy loss.Read more
Free-standing polycrystalline single-layer graphene used as a transmission grating for atomic diffraction experiments.1 characterization4 properties2 figuresExperimentalCStudied MaterialExpand
Graphene lattice used in time-dependent DFT molecular dynamics simulations of He and H transmission.No measurements recordedSimulatedCStudied MaterialExpand