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首页> 外文期刊>Journal of Applied Crystallography >Small-angle neutron scattering spectrometer Suanni equipped with ultra-thin biconcave focusing lenses
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Small-angle neutron scattering spectrometer Suanni equipped with ultra-thin biconcave focusing lenses

机译:小角度中子散射光谱仪Suanni配备超薄双凹聚焦透镜

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The small-angle neutron scattering (SANS) spectrometer Suanni at the liquid hydrogen cold neutron source of the 20 MW China Mianyang Research Reactor has recently been upgraded. Ultra-thin biconcave MgF2 lenses with a central thickness down to 0.2 mm have been installed between the collimator chamber and the sample stage. The lenses are able to improve the flux without too excessive an increase in the neutron beam size on the detector. A smaller minimum Q (Q(min)) can be obtained by decreasing the beam size without changing the total length of the spectrometer. By testing the central beam profiles under different neutron wavelengths (similar to 0.56-1 nm) with both traditional pinhole SANS (PSANS) and focusing SANS (FSANS) geometries, the gain factor thanks to the neutron lenses is about one order of magnitude. Given the loss of intensity due to the absorption of neutrons by the lenses, the benefits of the focusing can only be realized if it is possible to increase the aperture size. With an identical source aperture, FSANS can minimize the nominal Q(min) from 7.20 x 10(-3) nm(-1) (for PSANS) to 5.55 x 10(-3) nm(-1) at a neutron wavelength of 1 nm. The practical benefit provided by the lenses is verified with a solution of poly(methyl methacrylate) nanospheres, which yields a scattering intensity one order of magnitude higher and a better resolution with the FSANS geometry than with that of PSANS.
机译:最近已对20 MW中国绵阳研究堆的液态氢冷中子源中的小角度中子散射(SANS)光谱仪Suanni进行了升级。在准直仪腔和样品台之间安装了中心厚度低至0.2 mm的超薄双凹MgF2透镜。透镜能够改善通量,而不会过多增加探测器上的中子束大小。在不改变光谱仪总长度的情况下,通过减小光束尺寸可以获得较小的最小Q(Q(min))。通过使用传统的针孔SANS(PSANS)和聚焦SANS(FSANS)几何形状测试不同中子波长(约0.56-1 nm)下的中心光束轮廓,中子透镜的增益因子约为一个数量级。给定由于透镜吸收中子而引起的强度损失,只有在可能增加孔径的情况下,才能实现聚焦的好处。在相同的光源孔径下,FSANS可以将中子波长为7.20 x 10(-3)nm(-1)(对于PSANS)的标称Q(min)最小化为5.55 x 10(-3)nm(-1)。 1纳米通过聚甲基丙烯酸甲酯纳米球溶液验证了镜片提供的实际好处,与ANSPS相比,FSANS几何形状产生的散射强度高一个数量级,并且分辨率更高。

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