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Tensile strain mapping in flat germanium membranes

  • S. D. Rhead
  • , J. E. Halpin
  • , V. A. Shah
  • , M. Myronov
  • , D. H. Patchett
  • , P. S. Allred
  • , V. Kachkanov
  • , I. P. Dolbnya
  • , J. S. Reparaz
  • , N. R. Wilson
  • , C. M. Sotomayor Torres
  • , D. R. Leadley

Résultats de recherche: ArticleRevue par des pairs

12 Citations (Scopus)

Résumé

Scanning X-ray micro-diffraction has been used as a non-destructive probe of the local crystalline quality of a thin suspended germanium (Ge) membrane. A series of reciprocal space maps were obtained with ∼4 μm spatial resolution, from which detailed information on the strain distribution, thickness, and crystalline tilt of the membrane was obtained. We are able to detect a systematic strain variation across the membranes, but show that this is negligible in the context of using the membranes as platforms for further growth. In addition, we show evidence that the interface and surface quality is improved by suspending the Ge.

langue originaleEnglish
Numéro d'article172107
journalApplied Physics Letters
Volume104
Numéro de publication17
Les DOIs
étatPublished - 2 mai 2014

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