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Showing 1–11 of 11 results
Advanced filters: Author: Till Jahnke Clear advanced filters
  • The wave nature of light and particles is of interest to the fundamental quantum mechanics. Here the authors show the double-slit interference effect in the strong-field ionization of neon dimers by employing COLTRIMS method to record the momentum distribution of the photoelectrons in the molecular frame

    • Maksim Kunitski
    • Nicolas Eicke
    • Reinhard Dörner
    ResearchOpen Access
    Nature Communications
    Volume: 10, P: 1-7
  • A longitudinal multiomics analysis of a patient with multiple myeloma who developed peripheral T cell lymphoma after treatment with anti-BCMA CAR T cells and a GPRC5D-directed bispecific antibody reveals that two mutated CAR+CD8+ T cell clones were probably drivers of the neoplasm.

    • Till Braun
    • Michael Rade
    • Tim Richardson
    Research
    Nature Medicine
    Volume: 31, P: 1145-1153
  • Visualizing the structural dynamics of isolated molecules would help to understand chemical reactions, but this is difficult for complex structures. Intense femtosecond X-ray pulses allow the full imaging of exploding photoionized molecules, in this case, with eleven atoms.

    • Rebecca Boll
    • Julia M. Schäfer
    • Till Jahnke
    ResearchOpen Access
    Nature Physics
    Volume: 18, P: 423-428
  • Measuring photoionization time delays is an interesting and challenging topic. Here the authors demonstrate a method to measure the photoionization time delays using inner-shell ionization of CO molecule.

    • Jonas Rist
    • Kim Klyssek
    • Till Jahnke
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-8
  • Ultrashort laser fields applied to a helium dimer are able to tune the interactions between two helium atoms. A video of the dimer’s response to this localized disturbance shows the effect of dissociation and alignment of the wave packets.

    • Maksim Kunitski
    • Qingze Guan
    • Reinhard Dörner
    Research
    Nature Physics
    Volume: 17, P: 174-178
  • Interatomic Coulombic decay is a recently discovered ionization process by which energy absorbed from incident radiation by one atom is rapidly transferred to another. A study of this process in helium now shows that it can operate over remarkably long distances of more than 45 atomic radii.

    • Nicolas Sisourat
    • Nikolai V. Kryzhevoi
    • Lorenz S. Cederbaum
    Research
    Nature Physics
    Volume: 6, P: 508-511
  • When an electron with specific orbit — either clockwise or anticlockwise — in a rare gas atom is selectively ionized, the remaining ion will possess a stationary ring current, which can be probed in a time-delayed second ionization step.

    • Sebastian Eckart
    • Maksim Kunitski
    • Reinhard Dörner
    Research
    Nature Physics
    Volume: 14, P: 701-704