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首页> 外文期刊>The Astrophysical journal >EVALUATION OF ALGORITHMS FOR RECONSTRUCTING ELECTRON SPECTRA FROM THEIR BREMSSTRAHLUNG HARD X-RAY SPECTRA
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EVALUATION OF ALGORITHMS FOR RECONSTRUCTING ELECTRON SPECTRA FROM THEIR BREMSSTRAHLUNG HARD X-RAY SPECTRA

机译:从他们的气密硬X射线谱重建电子谱的算法评估

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The Ramaty High Energy Solar Spectroscopic Imager (RHESSl) has yielded solar flare hard X-ray spectra with unprecedented resolution, enabling reconstruction of mean source electron energy spectra F(E) by deconvolution of photon energy spectra I(ε). While various algorithms have been proposed, the strengths and weaknesses of each have yet to be explored in a systematic fashion. For real data F(E) is unknown, so these various algorithms must instead be tested on simulated data for which the "true" F(E) is known. Accordingly, we devised several forms of F(E) with "interesting" features, generated the corresponding (noise-added) I(ε), and recovered F(E) using a variety of algorithms, including zero- and first-order Tikhonov regularizations, triangular matrix row elimination, and forward fitting using a parametric form consisting of a double power law with low/high cutoffs plus an isothermal component. All inversion methods reconstructed the general magnitude and form of F(E) well, suffering only from (1) blurring of sharp features and (2) poor recovery at low electron energies E in cases in which F (E) was positive and large. Addition of a steep thermal component at low E did not prevent recovery of features at higher values of E. Forward fitting did recover large-scale forms and features well but, inevitably, failed to recover local features not expressible within the parametric used. This confirms that inversions are the most dependable way to discover such features. However, examination of the pattern of I(ε) residuals can suggest feature locations and so help refine the parametric form used. Since quite smooth F(E) forms do reproduce the observed I(ε) form with relatively small residuals, it appears that sharp features may be uncommon in actual flares.
机译:拉米高能太阳光谱成像仪(RHESSl)产生了具有空前分辨率的太阳耀斑硬X射线光谱,从而能够通过对光子能谱I(ε)进行反卷积来重建平均源电子能谱F(E)。尽管已经提出了各种算法,但是每种算法的优缺点尚待系统地探讨。对于真实数据F(E)是未知的,因此必须对已知“真实” F(E)的模拟数据测试这些各种算法。因此,我们设计了几种具有“有趣”特征的F(E)形式,生成了相应的(加噪的)I(ε),并使用多种算法(包括零阶和一阶Tikhonov)恢复了F(E)。正则化,三角矩阵行消除和使用参数形式的正向拟合,该参数形式由具有低/高截止值的双幂定律以及等温分量组成。所有的反演方法都很好地重建了F(E)的一般大小和形式,仅受(1)尖锐特征模糊和(2)在F(E)为正且大的情况下在低电子能量E下恢复较差的困扰。在低E下添加陡峭的热分量不会阻止在E值较高时恢复特征。正向拟合确实能很好地恢复大规模的形状和特征,但不可避免地无法恢复在使用的参数中无法表达的局部特征。这证实了反转是发现此类特征的最可靠方法。但是,对I(ε)残差模式的检查可以建议特征位置,从而有助于改进所使用的参数形式。由于相当光滑的F(E)形式确实可以重现观察到的I(ε)形式,具有相对较小的残差,因此在实际的耀斑中,尖锐的特征可能并不常见。

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