Nuclear phase retrieval spectroscopy using resonant x-ray scattering
Abstract
Abstract Light-matter interaction is exploited in spectroscopic techniques to access information about molecular, atomic or nuclear constituents of a sample. While scattered light carries both amplitude and phase information of the electromagnetic field, the latter is lost in intensity measurements. However, often the phase information is paramount to reconstruct the desired information of the target, as it is well known from coherent x-ray imaging. Here we introduce a phase retrieval method which allows us to reconstruct the field phase information from two-dimensional time- and energy-resolved spectra. We apply this method to the case of x-ray scattering off Mössbauer nuclei at a synchrotron radiation source. Knowledge of the phase allows also for the reconstruction of energy spectra from two-dimensional experimental data sets with excellent precision, without theoretical modelling of the sample. Our approach provides an efficient and accurate data analysis tool which will benefit x-ray quantum optics and Mössbauer spectroscopy with synchrotron radiation alike.
Article Details
Authors (17)
Ziyang Yuan
Hongxia Wang
Shanghai Key Laboratory of Plant Functional Genomics and Resources, Shanghai Chenshan Botanical Garden
Zhiwei Li
Tao Wang
Hui Wang
Xinchao Huang
Tianjun Li
Ziru Ma
Linfan Zhu
Wei Xu
Yujun Zhang
Yu Chen
Ryo Masuda
Graduate School of Science and Technology, Hirosaki University, Bunkyo-cho, Hirosaki-shi, Aomori 036-8561, Japan
Yoshitaka Yoda
Japan Synchrotron Radiation Research Institute, SPring-8
Jianmin Yuan
Adriana Pálffy
Xiangjin Kong