By Helmut Wiedemann
This ebook covers most recent improvement in conception and experiments of unconventional radiation construction. particularly, the new release of Tera-Hertz and X-ray radiation from low strength electron beams within the kind of Channeling, Transition, Diffraction, Cherenkov, Smith-Purcell, PXR and Crystalline Undulator Radiation are offered. fabric features like skinny pursuits, curved or bend crystals, inhomogeneous and left passed fabrics, multilayers in addition to stimulation by means of exterior radiation are lined to illustrate their effect in those procedures. Novel principles are provided at the use of such radiation in detectors and particle beam visual display unit improvement with greater strength or time solution. The ebook assumes a few familiarity of the reader with theoretical suggestions underlying those phenomena and is consequently of basic use to the training scientist. extra primary discussions of those phenomena are available within the 2002 monograph "Electron-Photon interplay in Dense Media" in the NATO technology sequence II: arithmetic, Physics and Chemistry – Vol. forty nine.
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Behandelt wird die elektromagnetische Feldtheorie. Vermittelt werden die daf? r erforderlichen mathematischen Methoden. Die Maxwell'schen Gleichungen werden vorgestellt und erl? utert. Es folgen Ausf? hrungen ? ber Elektrostatik, Str? mungsprobleme, Magnetostatik, quasistation? re Felder und elektromagnetische Wellen.
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Additional info for Advanced Radiation Sources and Applications: Proceedings of the NATO Advanced Research Workshop, held in Nor-Hamberd, Yerevan, Armenia, August 29-September 2, 2004
At present there are a lot of experimental works in this field (see [15-17] for recent ones and references therein) and the most of their results are in a qualitative agreement with the predictions of  with rather small deviation in the quantitative details. Essential contributions to the detailed analysis of this phenomenon were made in many theoretical works (for example, [18-24] and references therein). The series of qualitatively new experimental works has been recently appeared (for example, ) which could open the essentially new side in the PXR investigations and applications.
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. 11. Feranchuk, Coherent Phenomena for the Processes of X-ray and J - Radiation from the Relativistic Charged Particles, Doctor of Science Thesis, Belarusian University, Minsk, 1985. 12. , Pis'ma Zh. Eksp. Teor. Fiz. 41 (1985) 295. 13. , Phys. Lett.
The side and front views are shown in Figs. 1a and 1b, respectively. The particle beam is indicated by arrows p . The particles are channeling along the crystallographic planes denoted by the G reciprocal lattice vector g . The single-crystal plate is cylindrical in shape with a radius of curvature R around the axis f . The wavy lines with arrows show the direction of radiationpropagation at the maxima of the PXR reflections. The PXR reflections from the G crystallographic planes denoted by the reciprocal lattice vector g1 are focused at points F1 and F2 on the axis f .
Advanced Radiation Sources and Applications: Proceedings of the NATO Advanced Research Workshop, held in Nor-Hamberd, Yerevan, Armenia, August 29-September 2, 2004 by Helmut Wiedemann