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Handling the carbon contamination issue at SOLEIL

机译:在SOLEIL处理碳污染问题

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Before the first photon beam was delivered at the SOLEIL synchrotron, scientists tried to anticipate the problem of carbon contamination on optical components, with for instance the outgasing of chambers by prior exposure to the beam with dummy optics. In spite of these efforts, deterioration of optical performance by carbon contamination has remained an outstanding issue: on the low-energy beamlines at SOLEIL. For example, carbon contamination results in significant photons flux losses (practically at the Carbon K edges), and modifications of the horizontal-to-vertical polarization transmission ratio, which degrade with time as the thickness of the carbon layer builds up. This contamination is visible and consists of a gray/black line over the entire photon beam footprint. Addressing the carbon contamination issue, two cleaning processes have been tested quite successfully on two SOLEIL beamlines (in the UV-VUV and soft X-ray ranges), namely in-situ oxygen plasma and in-situ ozone generation via UV lamps. A dedicated group is currently working on the improvement of the cleaning processes, the metrology of the optics before and after cleaning and the study of the carbon coating in order to propose possible strategies to prevent or slow down the contamination process.
机译:在第一束光子光束通过SOLEIL同步加速器传输之前,科学家试图预见光学组件上的碳污染问题,例如,预先用虚拟光学器件将其暴露在光束中,从而使腔室脱气。尽管做出了这些努力,但碳污染造成的光学性能下降仍然是一个突出的问题:在SOLEIL的低能光束线上。例如,碳污染导致显着的光子通量损失(实际上在碳K边缘),并且水平/垂直极化透射比的更改随碳层厚度的增加而随时间降低。这种污染是可见的,并且由整个光子束足迹上的灰/黑线组成。为了解决碳污染问题,已经在两条SOLEIL光束线上(在UV-VUV和软X射线范围内)成功地测试了两种清洁工艺,即原位氧等离子体和通过UV灯产生的原位臭氧。目前有一个专门小组致力于改善清洁工艺,清洁前后的光学计量学以及研究碳涂层,以提出防止或减慢污染过程的可能策略。

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