Opt Lett. 2018 Oct 1;43(19):4586-4589. doi: 10.1364/OL.43.004586.
A novel method for estimating the pulse duration of partially coherent soft X-ray pulses from a far-field intensity pattern is presented. The method is based on intensity statistics at a single point in space and time, which allows the number of coherent longitudinal modes to be measured. Utilizing the knowledge of the coherence time of the radiation, either from the measurement of the spectral bandwidth or from numerical simulations, the duration of each individual pulse can be evaluated. This method was used to estimate the pulse duration of the laser-driven nickel-like molybdenum soft X-ray laser that is based on amplified spontaneous emission from a narrow plasma column and emits at a wavelength of 18.9 nm. By varying the length of the gain medium, a clear dependence of the number of modes caused mainly by the spectral line narrowing was observed. Supported by simulations of radiative transfer and pulse propagation, the pulse duration at the end of a 3 mm long gain medium was estimated to be 3.5 ps. The experimental data from far-field intensity patterns were also analyzed by applying the generalized van Cittert-Zernike theorem, providing a lower bound of effective source size.
提出了一种从远场强度分布估计部分相干软 X 射线脉冲脉宽的新方法。该方法基于空间和时间上的单点强度统计,允许测量相干纵向模式的数量。利用辐射的相干时间知识,无论是通过光谱带宽的测量还是通过数值模拟,都可以评估每个单独脉冲的持续时间。该方法用于估计基于窄等离子体柱放大自发发射并发射波长为 18.9nm 的激光驱动类钼软 X 射线激光的脉冲持续时间。通过改变增益介质的长度,可以观察到主要由光谱线变窄引起的模式数量的明显依赖关系。通过辐射传输和脉冲传播的模拟支持,在 3mm 长的增益介质末端估计的脉冲持续时间为 3.5ps。还通过应用广义 van Cittert-Zernike 定理对远场强度分布的实验数据进行了分析,提供了有效源尺寸的下限。