论文标题

太阳硬X射线成像中的可见性插值:应用于Rhessi和Stix

Visibility Interpolation in Solar Hard X-ray Imaging: Application to RHESSI and STIX

论文作者

Perracchione, Emma, Massa, Paolo, Massone, Anna Maria, Piana, Michele

论文摘要

太阳硬X射线成像的空间望远镜提供了由传入光子通量的采样傅立叶组成的观测值。这项研究的目的是设计一种图像重建方法,该方法依赖于增强的傅立叶域中的可见性插值。 %方法标题(强制性)基于插值的方法应用于通过在太阳能轨道机上实现的用于成像X射线X射线X射线(Stix)任务的光谱仪/望远镜内实现的仿真软件生成的合成可见性。还考虑了Reuven Ramaty高能光谱成像仪(RHESSI)观察到的实验可见性的应用。为了插入这些可见性数据,我们采用了一种基于可变缩放内核(VSK)的方法,通过利用先前有关耀斑源的先前信息,可以实现功能增强,并且在这里首次使用图像重建的目的(强制性介绍)以前使用了Interpolation Algoration Algoration Algoration Algoration Algoration Algorration Algoration Algoration Algorration vers,该信息能够实现特征。性能,特别是在Stix成像的情况下,其特征是傅立叶域的稀疏采样。对于Rhessi数据,当燃烧来源以狭窄的色带状形状或高分辨率检测器的特征来观察时,这种新颖的方法特别可靠。 %的结论标题(可选),如果需要使用VSK来插值硬性X射线可见性,则可以将其空无一人,可以在弹性源上的信息被一组零散的傅立叶数据编码时,并且当一组零散的傅立叶数据以及可见度表面受到频域中的显着振荡影响时,可以具有显着的图像重建精度。

Space telescopes for solar hard X-ray imaging provide observations made of sampled Fourier components of the incoming photon flux. The aim of this study is to design an image reconstruction method relying on enhanced visibility interpolation in the Fourier domain. % methods heading (mandatory) The interpolation-based method is applied on synthetic visibilities generated by means of the simulation software implemented within the framework of the Spectrometer/Telescope for Imaging X-rays (STIX) mission on board Solar Orbiter. An application to experimental visibilities observed by the Reuven Ramaty High Energy Solar Spectroscopic Imager (RHESSI) is also considered. In order to interpolate these visibility data we have utilized an approach based on Variably Scaled Kernels (VSKs), which are able to realize feature augmentation by exploiting prior information on the flaring source and which are used here, for the first time, for image reconstruction purposes.} % results heading (mandatory) When compared to an interpolation-based reconstruction algorithm previously introduced for RHESSI, VSKs offer significantly better performances, particularly in the case of STIX imaging, which is characterized by a notably sparse sampling of the Fourier domain. In the case of RHESSI data, this novel approach is particularly reliable when either the flaring sources are characterized by narrow, ribbon-like shapes or high-resolution detectors are utilized for observations. % conclusions heading (optional), leave it empty if necessary The use of VSKs for interpolating hard X-ray visibilities allows a notable image reconstruction accuracy when the information on the flaring source is encoded by a small set of scattered Fourier data and when the visibility surface is affected by significant oscillations in the frequency domain.

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