Annular tube surface meridian/sagittal homofocal crystal imager and manufacturing method thereof
A technology of imager and crystal, applied in instruments, using wave/particle radiation, using radiation for material analysis, etc., can solve the problems of weak signal detection, difficulty, inability to obtain two-dimensional focusing information of X-ray spectrum, etc., to avoid detection Difficult, high-resolution effects
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Embodiment 1
[0029] Embodiment one: see figure 1 and figure 2 A circular tube surface meridian / sagittal co-focus crystal imager is shown, which is composed of a crystal table 2 and a circular tube surface crystal sheet 9 pasted thereon;
[0030] The crystal platform 2 is a pentahedron, and the two sides 3 are equal right triangles, and a circular tube surface pit 1 is provided on the slope of the crystal platform 2;
[0031] The thickness of the circular tube surface crystal sheet 9 is 0.20mm, and the material is quartz;
[0032] The material of the crystal table 2 is SiO 2 Glass. One side 3 of the crystal table is a positioning surface, and the positioning surface is attached to the positioning components inside the X-ray spectrometer.
[0033] see figure 2 , The X-ray source is formed by laser fusion, or generated by an electron beam ion trap (EBIT), X-ray tube device. The diameter of the Rowland circle is equal to the radius of curvature of the meridian plane of the ring tube cr...
Embodiment 2
[0035]Embodiment 2: To make a circular tube surface crystal thin slice, the material is silicon crystal, the thickness is 0.15mm, and the rest is the same as the embodiment 1.
Embodiment 3
[0036] Embodiment 3: Fabrication of a ring-shaped tube-surface crystal thin slice is made of germanium crystal with a thickness of 0.22mm, and the rest are the same as in Embodiment 1.
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Abstract
Description
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