X-ray Microdiffraction Images of Antiferromagnetic Domain Evolution in Chromium

Author:

Evans P. G.1,Isaacs E. D.1,Aeppli G.2,Cai Z.3,Lai B.3

Affiliation:

1. Bell Laboratories, Lucent Technologies, 600-700 Mountain Avenue, Murray Hill, NJ 07974, USA.

2. NEC Research Institute, 4 Independence Way, Princeton, NJ 08540, USA.

3. Advanced Photon Source, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, IL 60439, USA.

Abstract

Magnetic x-ray diffraction combined with x-ray focusing optics was used to image individual antiferromagnetic spin density wave domains in a chromium single crystal at the micron scale. The cross section for nonresonant magnetic x-ray scattering depends on the antiferromagnetic modulation vector and spin polarization direction and allows these quantities to be extracted independently. The technique was used to show that the broadening of the nominally first-order “spin-flip” transition at 123 kelvin, at which the spins rotate by 90°, originates at the walls between domains with orthogonal modulation vectors. During cooling, the transition begins at these walls and progresses inward. The modulation vector domains are themselves unchanged.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference23 articles.

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3. J. B. Davidson S. A. Werner A. S. Arrot Magnetism and Magnetic Materials AIP Conference Proceedings No. 18 C. D. Graham Jr. J. J. Rhyne Eds. (American Institute of Physics New York 1973) part I pp. 396–400.

4. Overhauser A. W., Phys. Rev. 128, 1437 (1962).

5. Lomer W. M., Proc. Phys. Soc. (London) 80, 489 (1962).

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