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  • After preliminary results obtained and published recently ill, in our contribution focusing and reflectivity properties of the dispersive double bent-crystal arrangement are presented in much more detail. It has been found that two different bent perfect crystals in (+n,-m) setting can be good candidates for high efficiency neutron microfocusing as well as high-resolution monochromatisation. Due to the (+n,-m) setting of two different bent perfect crystals, a high resolution is expected in both Delta(2 theta) (2 theta is the scattering angle) as well as Delta lambda/lambda (lambda is the neutron wavelength). Experimental tests were carried out with the setting employing the bent Si(111) slab and Si(220)-sandwich, which contained either one, or two or four 1.3 mm thin simply stacked slabs. Thanks to a high reflection probability of both bent elements and an easy manipulation with the curvature of the Si(220)-sandwich, an excellently focused intensive monochromatic beam of the width from one to several millimetres was obtained. The properties of the double bent-crystal setting were studied in Rez at the neutron optics diffractometer for the neutron wavelength of 0.162 nm and for various thicknesses and curvatures of the Si(220)-sandwich. It has been also found that besides an excellent focusing and reflectivity properties of the dispersive double bent-crystal setting the obtained monochromatic neutron current is sufficiently high for standard high-resolution diffraction experiments even at the medium power research reactor.
  • After preliminary results obtained and published recently ill, in our contribution focusing and reflectivity properties of the dispersive double bent-crystal arrangement are presented in much more detail. It has been found that two different bent perfect crystals in (+n,-m) setting can be good candidates for high efficiency neutron microfocusing as well as high-resolution monochromatisation. Due to the (+n,-m) setting of two different bent perfect crystals, a high resolution is expected in both Delta(2 theta) (2 theta is the scattering angle) as well as Delta lambda/lambda (lambda is the neutron wavelength). Experimental tests were carried out with the setting employing the bent Si(111) slab and Si(220)-sandwich, which contained either one, or two or four 1.3 mm thin simply stacked slabs. Thanks to a high reflection probability of both bent elements and an easy manipulation with the curvature of the Si(220)-sandwich, an excellently focused intensive monochromatic beam of the width from one to several millimetres was obtained. The properties of the double bent-crystal setting were studied in Rez at the neutron optics diffractometer for the neutron wavelength of 0.162 nm and for various thicknesses and curvatures of the Si(220)-sandwich. It has been also found that besides an excellent focusing and reflectivity properties of the dispersive double bent-crystal setting the obtained monochromatic neutron current is sufficiently high for standard high-resolution diffraction experiments even at the medium power research reactor. (en)
Title
  • Focusing and reflectivity properties of a parallel double bent crystal ( plus n,-m) setting
  • Focusing and reflectivity properties of a parallel double bent crystal ( plus n,-m) setting (en)
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  • Focusing and reflectivity properties of a parallel double bent crystal ( plus n,-m) setting
  • Focusing and reflectivity properties of a parallel double bent crystal ( plus n,-m) setting (en)
skos:notation
  • RIV/61389005:_____/14:00433182!RIV15-GA0-61389005
http://linked.open...avai/riv/aktivita
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  • I, P(GB14-36566G), P(LM2010011), P(LM2011019)
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  • 17140
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  • RIV/61389005:_____/14:00433182
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  • double bent crystal; diffrraction; monochromator (en)
http://linked.open.../riv/klicoveSlovo
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  • [BDDAAD19F862]
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  • Munich
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  • Bristol
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  • Journal of Physics Conference Series
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  • Seong, B. S.
  • Pilch, Jan
  • Šaroun, Jan
  • Mikula, Pavol
  • Vrána, Miroslav
  • Em, V.
  • Woo, C.
http://linked.open...vavai/riv/typAkce
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  • 000340245000003
http://linked.open.../riv/zahajeniAkce
issn
  • 1742-6588
number of pages
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  • 10.1088/1742-6596/528/1/012003
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  • IOP Publishing Ltd
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