Download Advanced Radiation Sources and Applications: Proceedings of by Helmut Wiedemann PDF

By Helmut Wiedemann

This publication covers most modern improvement in thought and experiments of unconventional radiation construction. in particular, the new release of Tera-Hertz and X-ray radiation from low power electron beams within the kind of Channeling, Transition, Diffraction, Cherenkov, Smith-Purcell, PXR and Crystalline Undulator Radiation are awarded. fabric features like skinny ambitions, curved or bend crystals, inhomogeneous and left passed fabrics, multilayers in addition to stimulation via exterior radiation are lined to illustrate their impact in those strategies. Novel rules are provided at the use of such radiation in detectors and particle beam display screen improvement with greater power or time answer. The booklet assumes a few familiarity of the reader with theoretical suggestions underlying those phenomena and is consequently of fundamental use to the working towards scientist. extra primary discussions of those phenomena are available within the 2002 monograph "Electron-Photon interplay in Dense Media" in the NATO technological know-how sequence II: arithmetic, Physics and Chemistry – Vol. forty nine.

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Extra resources for Advanced Radiation Sources and Applications: Proceedings of the NATO Advanced Research Workshop, held in Nor-Hamberd, Yerevan, Armenia, August 29-September 2, 2004

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Paris) 44 (1983) 913. 2. Feranchuk, Kristallographiya 24 (1979) 289. 3. Baryshevsky, Nucl. Instr. Meth. B 122 (1997) 13. 4. Ivashin, Nucl. Instr. Meth. A 249 (1986) 308. 5. Polikarpov, J. of Phys D: Appl. Phys. 21 (1988) 831. 6. Feranchuk, Nucl. Instr. Meth. 228 (1985) 490. 7. Feranchuk, Phys. Lett. A 76 (1980) 452. 8. Feranchuk, Phys. Lett. A 102 (1984) 141. 9. Ivashin, Krystallographiya 34 (1989) 39. 10. Baryshevsky, Channeling, Radiation and Reactions in Crystals under the High Energies, Belarusian University, Minsk, 1982.

12,14,22], derived within the framework of the Ter-Mikaelian theory [10]. The focused PXR reflections arrive at the points F1 and F2 from the crystallographic planes having a nonzero structure factor parallel to (100), these are the (400), (800), (12 00) planes. The PXR reflections from higher-index planes have substantially lower yields. The PXR reflections from similar crystallographic planes, that are parallel to (0 10) , are going in opposite directions from the axis f . They form virtual images of focal points F1 and F2 .

13. P. Rullhusen, A. Artru, P. Dhez, Novel radiation sources using relativistic electrons, World Scientific Publishers, Singapore, 1998. 14. V. Shchagin, Investigations and properties of PXR, in: Electron-photon interactions in dense media, ed. by H. Wiedemann, NATO Science Series, II Mathematics, Physics and Chemistry, Vol. 49, Kluwer Academic Publishers, Dordrecht/Boston/London, 2002, pp. 133-151. 15. P. G. F. S. A. B. V. P. V. V. S. Shvarkov, Detection of proton parametric x-ray radiation in silicon, Phys.

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