By R. Avakian, K. Ispirian (auth.), Helmut Wiedemann (eds.)
A NATO complicated study Workshop on ”Advanced Radiation resources and functions” used to be held from August 29 to September 2, 2004. Hosted by means of the Yerevan Physics Institute, Yerevan, Armenia, 30 invited researchers from former Soviet Union and NATO nations accumulated at Nor-Hamberd, Yerevan, at the slopes of Mount Aragats to debate fresh theoretical in addition to expe- psychological advancements on technique of generating photons from often low strength electrons. Thismeetingbecamepossiblethroughthegenerousfundingprovidedbythe NATO technological know-how Committee and the programme director Dr. Fausto Pedrazzini within the NATO Scienti?c and Environmental Affairs department. The workshop - rectors have been Robert Avakian, Yerevan Physics Institute, Armenia and Helmut Wiedemann, Stanford (USA). Robert Avakian supplied employees, logistics and - frastructure from the Yerevan Physics institute to guarantee a tender execution of the workshop. designated thank you is going to Mrs. Ivetta Keropyan for admin- trative and logistics aid to international viewers. The workshop used to be held on the institute’s inn in Nor-Hamberd at the slopes of Mount Aragats now not faraway from the Yerevan cosmic ray station. The isolation and peaceable atmosphere of the hotel supplied the history for a fruitful week of shows and discussions. Following our invites, 38 researchers during this ?eld got here to the workshop from Armenia, Belarus, Romania, Russia, Ukraine, Denmark, France, G- many and the united states. Commuting from Yerevan neighborhood scientists joined the day-by-day shows. Over a ?ve day interval forty shows have been given.
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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
PhysicsUspekhi 44, 571-596 (2001) [in English]. PXR,CR,CU Radiation from Bent Crystals 45 12. V. K. Maruyama, Parametric X-rays, in: Accelerator-based atomic physics technique and applications, eds. M. C. Austin (AIP Press, New York, 1997) pp. 279-307. 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.
In polar angle=0 rad appears. 1, spectral-angular distribution halfwidth for a specific polar angle is about 5·10-5ZB. While radiation angle increase, central frequency of distribution Z0 moves along frequency axis away from ZB (see Fig. 2). Thus, total frequency width of x-ray reflex going to be ~5·10-1ZB. 6,0E-02 T = 6,3 ×10-3 rad - Spectral-angular distribution, photons/(e keV sr) 7,0E-02 5,0E-02 4,0E-02 T = 7,4 ×10-3 rad 3,0E-02 2,0E-02 T= 3,5 ×10-3 rad 1,0E-02 0,0E+00 1,0298 1,0303 1,0308 1,0313 1,0318 1,0323 Z/ZB Figure 1.
Positrons or other positive particles are channeling along a cylindrically bent crystal undulator in the G crystallographic planes denoted by the reciprocal lattice vector g . They emit the CUR of frequency ZCUR Z B along of particles trajectory ( Z B is the Bragg frequency relative to the crystallographic planes at 45 D to the particle trajectory, that are denoted by the reciprocal G lattice vector g1 ). The diffracted and extracted part of the crystal undulator radiation (DCUR) is focused at the point F3 at 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 R. Avakian, K. Ispirian (auth.), Helmut Wiedemann (eds.)