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Design of a bolometer for total-energy measurement of the linear coherent light source pulsed X-ray laser

机译:用于线性相干光源脉冲X射线激光总能量测量的辐射热计的设计

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We are developing a cryogenic bolometer to measure the total energy of the linear coherent light source (LCLS) free electron X-ray laser to be built at the Stanford Linear Accelerator Center. The laser will produce Ultrabright X-ray pulses in the energy range between 0.8 and 8 keV with similar to 10(12) photons per similar to 200fs pulse at a repeat interval of 8ms, and will be accompanied by a halo of spontaneous undulator radiation. The bolometer is designed to determine the total energy of each laser pulse to within < 0.1%, taking into account thermal and mechanical stress to prevent melting in the LCLS beam due to its high energy density. We propose to use a magnetoresistive Nd(1-x)SrxMnO3 sensor array at the metal-insulator transition, where the composition x is adjusted to produce the desired transition temperature. We discuss design considerations and material choices, and present numerical simulations of the thermal response. (c) 2006 Published by Elsevier B.V.
机译:我们正在开发一种低温辐射热计,以测量将在斯坦福线性加速器中心制造的线性相干光源(LCLS)自由电子X射线激光器的总能量。激光将在0.8至8 keV的能量范围内产生Ultrabright X射线脉冲,每8s重复间隔每200fs脉冲将产生约10(12)个光子,并伴有自发起伏辐射。辐射热计旨在确定每个激光脉冲的总能量在<0.1%以内,同时考虑到热应力和机械应力,以防止由于高能量密度而导致LCLS光束熔化。我们建议在金属-绝缘体转变处使用磁阻Nd(1-x)SrxMnO3传感器阵列,在其中调整成分x以产生所需的转变温度。我们讨论了设计注意事项和材料选择,并提出了热响应的数值模拟。 (c)2006年由Elsevier B.V.发布

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