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Adaption of a diffractometer for time‐resolved X‐ray resonant magnetic scattering

Identifieur interne : 000082 ( Main/Exploration ); précédent : 000081; suivant : 000083

Adaption of a diffractometer for time‐resolved X‐ray resonant magnetic scattering

Auteurs : Stefan Buschhorn [Allemagne] ; Frank Brüssing [Allemagne] ; Radu Abrudan [Allemagne] ; Hartmut Zabel [Allemagne]

Source :

RBID : ISTEX:3B1ADABF8379B2266DD036AF38ECE64424F5DDB4

English descriptors

Abstract

A new set‐up is presented to measure element‐selective magnetization dynamics using the ALICE chamber [Grabis et al. (2003), Rev. Sci. Instrum.74, 4048–4051] at the BESSY II synchrotron at the Helmholtz‐Zentrum Berlin. A magnetic‐field pulse serves as excitation, and the magnetization precession is probed by element‐selective X‐ray resonant magnetic scattering. With the use of single‐bunch‐generated X‐rays a temporal resolution well below 100 ps is reached. The ALICE diffractometer environment enables investigations of thin films, described here, multilayers and laterally structured samples in reflection or diffuse scattering geometry. The combination of the time‐resolved set‐up with a cryostat in the ALICE chamber will allow temperature‐dependent studies of precessional magnetization dynamics and of damping constants to be conducted over a large temperature range and for a large variety of systems in reflection geometry.

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DOI: 10.1107/S0909049510045358


Affiliations:


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Le document en format XML

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<div type="abstract" xml:lang="en">A new set‐up is presented to measure element‐selective magnetization dynamics using the ALICE chamber [Grabis et al. (2003), Rev. Sci. Instrum.74, 4048–4051] at the BESSY II synchrotron at the Helmholtz‐Zentrum Berlin. A magnetic‐field pulse serves as excitation, and the magnetization precession is probed by element‐selective X‐ray resonant magnetic scattering. With the use of single‐bunch‐generated X‐rays a temporal resolution well below 100 ps is reached. The ALICE diffractometer environment enables investigations of thin films, described here, multilayers and laterally structured samples in reflection or diffuse scattering geometry. The combination of the time‐resolved set‐up with a cryostat in the ALICE chamber will allow temperature‐dependent studies of precessional magnetization dynamics and of damping constants to be conducted over a large temperature range and for a large variety of systems in reflection geometry.</div>
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