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Titlebook: Channeling and Radiation in Periodically Bent Crystals; Andrey V. Korol,Andrey V. Solov‘yov,Walter Greiner Book 2014Latest edition Springe

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楼主: MOTE
发表于 2025-3-25 06:23:46 | 显示全部楼层
1615-5653 upplementary material: .The development of coherent radiation sources for sub-angstrom wavelengths - i.e. in the hard X-ray and gamma-ray range - is a challenging goal of modern physics. The availability of such sources will have many applications in basic science, technology and medicine and in par
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Positron-Based CU: Illustrative Material,nce of CUR is calculated using the parameters of positron beams from several modern . colliders. Analytical and numerical analysis of the influence of the periodic bending imperfectness on spectral distribution of CUR is carried out.
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Experimental Studies of CUR,electron beams (below 1 GeV) at MAinz MIcrotron (MAMI) facility (Backe et al., Nuovo Cimento C 34:157–165, 2011). The CUs used in the experiment were based on graded composition strained layers Si.Ge. and were manufactured in Aarhus University (Denmark).
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Book 2014Latest editiondern physics. The availability of such sources will have many applications in basic science, technology and medicine and in particular, they may have a revolutionary impact on nuclear and solid state physics, as well as on the life sciences. The present state-of-the-art lasers are capable of emittin
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Polymeric Biomaterials in Medica L Systems that despite a number of parasitic effects, present technologies are nearly sufficient to achieve the conditions needed to achieve the emission stimulation by means of CU. It is shown, that the brilliance of CUL radiation can be as high as .–.. in the sub-Angstrøm range of the emitted photon wavelengths.
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Polyelectrolytes and Nanoparticlessiting tensile strips onto the surface of a crystal. In connection with periodic surface deformations method, we present a formalism which allows on to analyze the variation of the bending amplitude across the crystal thickness.
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Schemes for Periodic Bending of Crystals,siting tensile strips onto the surface of a crystal. In connection with periodic surface deformations method, we present a formalism which allows on to analyze the variation of the bending amplitude across the crystal thickness.
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