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Solar science at metric radio wavelengths: Coming of age

机译:度量射频波长的太阳科:年龄的到来

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The merits of solar coronal at metric-wavelength (MW) radio have long been recognised (e.g. Pick and Vilmer, 2008). High-fidelity solar radio imaging at these frequencies has however remained challenging. On the one hand, dealing with the small spectral and temporal scales of variation in solar radio emission requires a data product capable of tracking the emission simultaneously across time, frequency and morphology. The Fourier imaging nature of interferometry, on the other hand, severely limits the instrumental ability to gather sufficient information to do this with the required fidelity and resolution. Benefiting from the enormous advances in technology the new generation of instruments, like the Murchison Widefield Array (MWA; Tingay et al. (2013), Bowman et al. (2013)), represent a quantum leap in our ability to gather data suitable for radio solar physics.
机译:长期以来已经认识到公制波长(MW)无线电处的太阳冠的优点(例如,Pick and Vilmer,2008)。然而,这些频率的高保真太阳能无线电成像仍然具有挑战性。一方面,处理太阳无线电发射的小光谱和时间尺度,需要一种能够在时间,频率和形态同时跟踪发射的数据产品。另一方面,干涉测量法的傅里叶成像性质严重限制了收集足够信息的乐器能力,以通过所需的保真度和分辨率来实现这一目标。从技术的巨大进步中受益于新一代乐器,如默奇逊景观阵列(MWA; Tingay等人。(2013),Bowman等人),代表了我们收集适合数据的数据的量化飞跃无线电太阳能物理。

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