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首页> 外文期刊>Astronomy and astrophysics >Probing photospheric magnetic fields with new spectral line pairs
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Probing photospheric magnetic fields with new spectral line pairs

机译:用新的光谱线对探测光层磁场

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Context. The magnetic line ratio (MLR) method has been extensively used in the measurement of photospheric magnetic field strength. It was devised for the neutral iron line pair at 5247.1?? and 5250.2?? (5250?? pair). Other line pairs as well-suited as this pair have not been reported in the literature. Aims. The aim of the present work is to identify new line pairs useful for the MLR technique and to test their reliability. Methods. We used a three-dimensional magnetohydrodynamic 3D MHD simulation representing the quiet Sun atmosphere to synthesize the Stokes profiles. Then, we applied the MLR technique to the Stokes V profiles to recover the fields in the MHD cube both at original resolution and after degrading with a point spread function. In both these cases, we aim to empirically represent the field strengths returned by the MLR method in terms of the field strengths in the MHD cube. Results. We have identified two new line pairs that are very well adapted to be used for MLR measurements. The first pair is in the visible, Fe i 6820–6842??, whose intensity profiles have previously been used to measure stellar magnetic fields, and the other pair is in the infrared (IR), Fe i 15?534–15?542??. The lines in these pairs reproduce the magnetic fields in the MHD cube rather well and, in fact, somewhat better than the original 5250?? pair. Conclusions. The newly identified line pairs complement the old pairs. The lines in the new IR pair, because of their higher Zeeman sensitivity, are ideal for the measurement of weak fields. The new visible pair works best above 300 ?G. The new IR pair, due to its large Stokes V signal samples more fields in the MHD cube than the old IR pair at 1.56 μ m, even in the presence of noise, and hence likely also on the real Sun. Owing to their low formation heights (100–200?km above τ _(5000)= 1 ), both the new line pairs are well suited for probing magnetic fields in the lower photosphere.
机译:上下文。磁线比(MLR)方法已广泛用于光球磁场强度的测量中。它是为5247.1的中性铁线对设计的。和5250.2 ?? (5250 ??对)。文献中还没有报道与该对非常匹配的其他线对。目的本工作的目的是确定对MLR技术有用的新线对并测试其可靠性。方法。我们使用三维磁流体动力学3D MHD模拟(代表安静的太阳大气)合成了斯托克斯剖面。然后,我们将MLR技术应用于Stokes V剖面,以原始分辨率和使用点扩散函数进行退化后恢复MHD立方体中的场。在这两种情况下,我们旨在根据MHD立方体中的场强经验地表示MLR方法返回的场强。结果。我们已经确定了两个非常适合用于MLR测量的新线对。第一组位于可见光的Fe i 6820–6842 ??中,其强度分布以前曾用于测量恒星磁场,另一对位于红外(IR)中,Fe i 15?534–15?542 ??。这些线对中的线能够很好地再现MHD立方体中的磁场,并且实际上比原始5250更好。对。结论。新识别的线对是旧线对的补充。新的红外对中的线由于具有更高的塞曼灵敏度,因此非常适合用于测量弱场。新的可见光对在300?G以上时效果最佳。新的IR对由于其较大的Stokes V信号而在MHD立方体中以1.56μm的采样率比旧的IR对采样更多的场,即使在存在噪声的情况下,因此也可能在真实的太阳上。由于它们的低地层高度(在τ_(5000)= 1之上100-200?km),这两个新的线对都非常适合探测较低光层中的磁场。

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