Kossel interferences of proton-induced X-ray emission lines in periodic multilayers

Author:

Wu Meiyi,Le Guen Karine,André Jean-Michel,Ilakovac Vita,Vickridge Ian,Schmaus Didier,Briand Emrick,Steydli Sébastien,Burcklen Catherine,Bridou Françoise,Meltchakov Evgueni,de Rossi Sébastien,Delmotte Franck,Jonnard Philippe

Publisher

Elsevier BV

Subject

Instrumentation,Nuclear and High Energy Physics

Reference34 articles.

1. Die Richtungsverteilung der in einem Kristall entstandenen charakteristischen Röntgenstrahlung;Kossel;Z. Für Phys.,1935

2. E. Langer, S. Däbritz, 75years of Kossel patterns – past and future, in: EMAS 2009 11th Eur. Workshop Mod. Dev. Appl. Microbeam Anal., Gdansk, Poland, 2009, pp. 33–51.

3. X-ray divergent-beam (Kossel) technique: a review;Lider;Crystallogr. Rep.,2011

4. Modulation of X-ray line intensity emitted by a periodic structure under electron excitation;Jonnard;Appl. Phys. Lett.,2002

5. Soft-X-ray Kossel structures from W/C multilayers under various electron ionization conditions;Jonnard;Phys. Rev. A,2003

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