...
【24h】

On incoherent diffractive imaging

机译:在非相干衍射成像

获取原文
获取原文并翻译 | 示例
           

摘要

Incoherent diffractive imaging (IDI) promises structural analysis with atomic resolution based on intensity interferometry of pulsed X-ray fluorescence emission. However, its experimental realization is still pending and a comprehensive theory of contrast formation has not been established to date. Explicit expressions are derived for the equal-pulse two-point intensity correlations, as the principal measured quantity of IDI, with full control of the prefactors, based on a simple model of stochastic fluorescence emission. The model considers the photon detection statistics, the finite temporal coherence of the individual emissions, as well as the geometry of the scattering volume. The implications are interpreted in view of the most relevant quantities, including the fluorescence lifetime, the excitation pulse, as well as the extent of the scattering volume and pixel size. Importantly, the spatiotemporal overlap between any two emissions in the sample can be identified as a crucial factor limiting the contrast and its dependency on the sample size can be derived. The paper gives rigorous estimates for the optimum sample size, the maximum photon yield and the expected signal-to-noise ratio under optimal conditions. Based on these estimates, the feasibility of IDI experiments for plausible experimental parameters is discussed. It is shown in particular that the mean number of photons per detector pixel which can be achieved with X-ray fluorescence is severely limited and as a consequence imposes restrictive constraints on possible applications.
机译:非相干衍射成像(伊迪)的承诺基于结构分析与原子分辨率脉冲x射线的强度干涉法荧光发射。实现仍悬而未决和全面对比理论尚未形成建立日期。派生的equal-pulse两点强度相关性,主要测定量伊迪,完全控制前因子,基于一个简单的随机模型荧光发射。光子检测统计,有限的时间个人排放量的一致性,以及的几何形状散射体积。含义解释的相关数量,包括荧光一生中,激励脉冲,以及散射体积和像素大小的程度。重要的是,时空重叠任意两个排放在样例可以被识别限制的对比及其作为一个至关重要的因素依赖于样本容量可以派生。提出了严格的最优估计样本大小,最大光子产量和预计下信噪比最优的条件。似是而非的伊迪的可行性实验实验参数进行了探讨。特别是,平均光子数的与x射线探测器像素,可以实现荧光是相当有限的,作为一个结果实施严格的限制可能的应用程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号