Based on the theory that is ray emitted from a focus(front)of an ellipse will converge on the other focus(back)by the reflection on the elliptical surface
the Elliptical Crystal Spectrograph(ECS)in the X-ray region of 620~6200 eV was designed. The principle of the system was analyzed
and the design and manufacture were accomplished. KAP
LiF
PET and MiCa are used as dispersive elements covering Bragg angle from 30°to 67.5°. The crystal sizes are 120×8×0.2 mm with the curved analyzer substrate of eccentricity ε=0.9586
focal distance of 1350 mm
and optical path length of 1456 mm. The analyzer of the elliptical profiles was machined into a suitable substrate material using a Computer-Controlled milling machine. The Elliptical Crystal Spectrograph was experimented on Shanghai "Shenzhou Ⅱ" with laser energy of 150 J
laser wavelength of 0.35 μm
and chamber vacuum level 3×13
-3
Pa. To achieve optical alignment with a small point source
an aligned telescope was precisely fitted to the elliptical analyzer block. The result shows that spectra of Au target can be measured in 0.63~0.709 nm with a resolution of 1/486(△λ/λ). It is found that the resolution of the spectrograph depends on the rocking curve and the thickness of the crystal and the laser spot diameter. In addition
ECS is simpler and easier to use
with a higher collecting efficiency and a better resolution. It can effectively obtain abundant information of the laser-plasma emission spectra in an inertial confinement fusion.
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Keywords
references
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