2004Physica ScriptaOpen access

X-ray Magnetic Circular Dichroism for Quantitative Element-Resolved Magnetic Microscopy

W. Kuch

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Abstract

The use of X-ray magnetic circular dichroism in the absorption of soft X-rays for the layer-resolved imaging of magnetic domains is introduced. A photoelectron emission microscope, used as position-sensitive detector for electron yield detection of resonant absorption of circularly polarized X-rays at elemental absorption edges, enables the imaging of the magnetic microstructures at surfaces and buried magnetic layers. Extended to full-image local X-ray magnetic circular dichroism microspectroscopy, this combination of techniques allows the local microscopic determination of element-resolved spin and orbital magnetic moments.

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The use of X-ray magnetic circular dichroism in the absorption of soft X-rays for the layer-resolved imaging of magnetic domains is introduced. A photoelectron emission microscope, used as position-sensitive detector for electron yield detection of resonant absorption of circularly polarized X-rays at elemental absorption edges, enables the imaging of the magnetic microstructures at surfaces and buried magnetic layers. Extended to full-image local X-ray magnetic circular dichroism microspectroscopy, this combination of techniques allows the local microscopic determination of element-resolved spin and orbital magnetic moments.

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Available abstract

The use of X-ray magnetic circular dichroism in the absorption of soft X-rays for the layer-resolved imaging of magnetic domains is introduced. A photoelectron emission microscope, used as position-sensitive detector for electron yield detection of resonant absorption of circularly polarized X-rays at elemental absorption edges, enables the imaging of the magnetic microstructures at surfaces and buried magnetic layers. Extended to full-image local X-ray magnetic circular dichroism microspectroscopy, this combination of techniques allows the local microscopic determination of element-resolved spin and orbital magnetic moments.

Key concepts: Magnetic circular dichroism, X-ray magnetic circular dichroism, Materials science, Circular polarization, Optics, Absorption (acoustics), Linear dichroism, Vibrational circular dichroism

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