Author:
Idrobo Juan Carlos,Rusz Ján,Spiegelberg Jakob,McGuire Michael A.,Symons Christopher T.,Vatsavai Ranga Raju,Cantoni Claudia,Lupini Andrew R.
Abstract
AbstractAlthough magnetism originates at the atomic scale, the existing spectroscopic techniques sensitive to magnetic signals only produce spectra with spatial resolution on a larger scale. However, recently, it has been theoretically argued that atomic size electron probes with customized phase distributions can detect magnetic circular dichroism. Here, we report a direct experimental real-space detection of magnetic circular dichroism in aberration-corrected scanning transmission electron microscopy (STEM). Using an atomic size-aberrated electron probe with a customized phase distribution, we reveal the checkerboard antiferromagnetic ordering of Mn moments in LaMnAsO by observing a dichroic signal in the Mn L-edge. The novel experimental setup presented here, which can easily be implemented in aberration-corrected STEM, opens new paths for probing dichroic signals in materials with unprecedented spatial resolution.
Publisher
Springer Science and Business Media LLC
Subject
Spectroscopy,Radiology Nuclear Medicine and imaging,Chemical Engineering (miscellaneous)
Cited by
38 articles.
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