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首页> 外文期刊>Journal of synchrotron radiation >CD12: a new high-flux beamline for ultraviolet and vacuum-ultraviolet circular dichroism on the SRS, Daresbury
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CD12: a new high-flux beamline for ultraviolet and vacuum-ultraviolet circular dichroism on the SRS, Daresbury

机译:CD12:一种新的高通量光束线,用于达累斯伯里SRS上的紫外线和真空-紫外线圆二色性

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This paper describes the commissioning and characterization of an SRS bending-magnet beamline constructed for the measurement of vacuum-ultraviolet circular dichroism on biological and other materials. The beamline provides photon fluxes of many orders of magnitude greater than commercial instruments or beamlines at other synchrotron radiation facilities. The beamline uses the conventional approach of utilizing the plane polarized light emitted from the bending magnet which is subsequently converted into circularly polarized light using a photoelastic modulator with a switching frequency of 50 kHz. The beamline has a best wavelength resolution of 0.5 nm and stray light levels better than 0.01%. The latter may be predicted to give improved performance over other beamlines at synchrotron radiation sources especially when short-wavelength CD spectra are to be collected. An example spectrum and submillisecond time-resolved CD profile are given and the impact that the new beamline is likely to have is speculated on. The ultimate flux limitations of the technique with regard to the avoidance of the effects of radiation damage are also discussed. [References: 29]
机译:本文介绍了用于测量生物和其他材料上的真空-紫外线圆二色性的SRS弯曲磁体光束线的调试和特性。光束线提供的光子通量比其他同步加速器辐射设施上的商用仪器或光束线大许多数量级。光束线使用常规方法,利用从弯曲磁铁发出的平面偏振光,然后使用光弹性调制器将其转换为圆偏振光,该开关调制频率为50 kHz。光束线的最佳波长分辨率为0.5 nm,杂散光水平优于0.01%。可以预测后者在同步加速器辐射源上的性能优于其他光束线,尤其是在短波长CD光谱要采集时。给出了示例频谱和亚毫秒级时间分辨的CD轮廓,并推测了新光束线可能产生的影响。还讨论了该技术在避免辐射损伤影响方面的最终通量限制。 [参考:29]

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