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Study of design parameters governing the performances of synchrotron mirrors

机译:控制同步加速器镜性能的设计参数的研究

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Abstract: The high brilliance of third generation synchrotrons makes the cooling of mirrors highly critical, but a careful matching between the critical energy $epsilon$-crit$/ of the insertion device - controlled by gap tuning - and the energy cut-off $epsilon$-cut$/ of the mirror allows us to lower the heat load considerably. A universal relationship between the absorbed power and the ratio $epsilon$-cut$//$epsilon$-crit$/ is derived numerically. The optical configuration of the beamline can be optimized by taking into account the competition between optical aberrations, figure errors, and the demagnification. An analytical expression of the optimal demagnification for high flux applications is given. !14
机译:摘要:第三代同步加速器的高亮度使反射镜的冷却变得非常关键,但是插入设备的临界能量ε临界值/由间隙调整控制和能量截止ε值之间要仔细匹配镜子的$ -cut $ /可以使我们大大降低热负荷。通过数值推导得出吸收功率与ε-cut-cut///ε-crit$ /之比之间的普适关系。可以通过考虑光学像差,图形误差和缩小倍率之间的竞争来优化光束线的光学配置。给出了用于高通量应用的最佳放大倍数的解析表达式。 !14

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