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000840012 1001_ $$0P:(DE-HGF)0$$aGrillo, Vincenzo$$b0
000840012 245__ $$aObservation of nanoscale magnetic fields using twisted electron beams
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000840012 520__ $$aElectron waves give an unprecedented enhancement to the field of microscopy by providing higher resolving power compared to their optical counterpart. Further information about a specimen, such as electric and magnetic features, can be revealed in electron microscopy because electrons possess both a magnetic moment and charge. In-plane magnetic structures in materials can be studied experimentally using the effect of the Lorentz force. On the other hand, full mapping of the magnetic field has hitherto remained challenging. Here we measure a nanoscale out-of-plane magnetic field by interfering a highly twisted electron vortex beam with a reference wave. We implement a recently developed holographic technique to manipulate the electron wavefunction, which gives free electrons an additional unbounded quantized magnetic moment along their propagation direction. Our finding demonstrates that full reconstruction of all three components of nanoscale magnetic fields is possible without tilting the specimen.
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000840012 7001_ $$00000-0002-5368-136X$$aHarvey, Tyler R.$$b1
000840012 7001_ $$00000-0002-3156-4736$$aVenturi, Federico$$b2
000840012 7001_ $$0P:(DE-HGF)0$$aPierce, Jordan S.$$b3
000840012 7001_ $$00000-0003-3487-5561$$aBalboni, Roberto$$b4
000840012 7001_ $$0P:(DE-HGF)0$$aBouchard, Frédéric$$b5
000840012 7001_ $$0P:(DE-HGF)0$$aCarlo Gazzadi, Gian$$b6
000840012 7001_ $$00000-0002-9352-1125$$aFrabboni, Stefano$$b7
000840012 7001_ $$0P:(DE-Juel1)157886$$aTavabi, Amir H.$$b8$$ufzj
000840012 7001_ $$0P:(DE-HGF)0$$aLi, Zi-An$$b9
000840012 7001_ $$0P:(DE-HGF)0$$aBoyd, Robert W.$$b10
000840012 7001_ $$00000-0001-7207-1076$$aMcMorran, Benjamin J.$$b11
000840012 7001_ $$00000-0002-8168-7304$$aKarimi, Ebrahim$$b12$$eCorresponding author
000840012 7001_ $$0P:(DE-Juel1)144121$$aDunin-Borkowski, Rafal$$b13$$ufzj
000840012 773__ $$0PERI:(DE-600)2553671-0$$a10.1038/s41467-017-00829-5$$gVol. 8, no. 1, p. 689$$n1$$p689$$tNature Communications$$v8$$x2041-1723$$y2017
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