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@ARTICLE{Rotunno:878150,
      author       = {Rotunno, Enzo and Zanfrognini, Matteo and Frabboni, Stefano
                      and Rusz, Jan and Dunin-Borkowski, Rafal and Karimi, Ebrahim
                      and Grillo, Vincenzo},
      title        = {{O}rbital angular momentum resolved electron magnetic
                      chiral dichroism},
      journal      = {Physical review / B},
      volume       = {100},
      number       = {22},
      issn         = {2469-9950},
      address      = {Woodbury, NY},
      publisher    = {Inst.},
      reportid     = {FZJ-2020-02663},
      pages        = {224409},
      year         = {2019},
      abstract     = {We propose to use the recently introduced orbital angular
                      momentum spectrometer in a transmission electron microscope
                      to perform electron magnetic chiral dichroism experiments,
                      dispersing the inelastically scattered electrons from a
                      magnetic material in both energy and angular momentum. The
                      technique offers several advantages over previous
                      formulations of electron magnetic chiral dichroism as it
                      requires much simpler experimental conditions in terms of
                      specimen orientation and thickness. A simulation algorithm,
                      based on the multislice description of the beam propagation,
                      is used to anticipate the advantages of the approach over
                      current electron magnetic chiral dichroism implementations.
                      Numerical calculations confirm an increased magnetic signal
                      to noise ratio with in plane atomic resolution.},
      cin          = {ER-C-1},
      ddc          = {530},
      cid          = {I:(DE-Juel1)ER-C-1-20170209},
      pnm          = {143 - Controlling Configuration-Based Phenomena (POF3-143)
                      / Q-SORT - QUANTUM SORTER (766970)},
      pid          = {G:(DE-HGF)POF3-143 / G:(EU-Grant)766970},
      typ          = {PUB:(DE-HGF)16},
      UT           = {WOS:000501542400004},
      doi          = {10.1103/PhysRevB.100.224409},
      url          = {https://juser.fz-juelich.de/record/878150},
}