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We have searched for interrelations of spikes emitted simultaneously at different frequencies during the impulsive phase of flare events (Fig.1). As the spikes are related to the flare energy release and are interpreted as emissions that originate at different sites having different magnetic field strengths, any relation in frequency is interpretated as a relation in space. Quantities of symbolic dynamics, such as mutual information, Shannon information and algorithmic complexity are appropriate to characterize such spatiotemporal patterns, whereas the popular estimate of fractal dimensions can be applied to low-dimensional systems only.The goal is to decide between two possible types of fragmentation depending on the energy release and emission processes, which we callglobal andlocal organization. In the global organization the whole region becomes supercritical, and the energy is released in independent, small regions. The alternative local scenario requires a trigger that spreads from initial localized events and ignites nearby regions.Mutual information which is a generalization of correlation indicates a relation in frequency beyond the bandwidth of individual spikes. The scans in the spectrograms with large mutual information also show a low level of Shannon information and algorithmic complexity, indicating that the simultaneous appearance of spikes at other frequencies is not a completely stochastic phenomenon (white noise). It may be caused by a nonlinear deterministic system or by a Markov process. By means of mutual information we find a memory over frequency intervals up to 60 MHz (Fig. 2). Shannon information and algorithmic complexity, however, describe spike events as a whole, i.e. a global source region. A global organization is also apparent in quasi-periodic changes of the Shannon information and algorithmic complexity in the range of 2–8 seconds (Fig. 3).This findings is compatible with a scenario of local organization in which the information of one spike event spreads spatially and hence triggers further spike events at different places. The region is not an ensemble of independently flashing sources, each representing a system that cascades in energy after an initial trigger. On the contrary, there is a causal connection between the sources at any time.The analysis of four spike events suggests that the simultaneous appearance of spikes is not stochastically independent but a process in which spikes at nearby locations are simultaneously triggered by a common exciter.We have shown in the case in the case of spikes that quantities from nonlinear dynamics used in this paper are helpful in detecting structural properties of complex spatio-temporal patterns. This approach seems to be promising also for several other astrophysical applications. 相似文献
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本文给出球形导体倾斜赫芝振子辐射场的线极化与圆极化分量表达式,并进行计算,示出典型剖面内的各分量方向图。由此可进一步分析球形导体上线状天线的辐射特性。 相似文献
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在考虑中心锥、波瓣混合器、火焰稳定器以及加力燃烧室筒体影响的条件下,将轴对称收扩喷管改型设计为圆转矩形基准喷管,进一步在喷管出口进行修型设计.并对不同锯齿喷管流动、换热与红外辐射特征进行了数值分析.得到如下结论:考虑高温部件后,喷管红外辐射强度的方向性特征更加明显;相比圆转矩形基准喷管,采用多个小尺寸锯齿时,射流高温区长度有一定缩短,采用单个大尺寸锯齿时,高温区长度进一步缩短,其正后方红外辐射强度降低;将轴对称收扩喷管改为圆转矩形喷管并加装锯齿后,强化尾喷流与外流掺混,降低其红外辐射强度的同时带来了一定的推力损失. 相似文献
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根据PTB和ISO 4037-1:2019要求,关于高空气比释动能系列(H系列)X射线参考辐射质的推荐数据,外推得出H-450的附加过滤为6.24 mm Cu,第一半值层(HVL1st)为(5.39~5.52)mm Cu,平均光子能量为(214.25~214.78)keV,剂量率为11.51 Gy/h(距离焦斑为1 m处,管电流为10 mA)。随后,使用PTW32005电离室作为测量器具,采用半值层法建立H-450 X射线参考辐射质,得出HVL1st为5.37 mm Cu,第二半值层(HVL2nd)为5.97 mm Cu,同质系数为0.9。最后,使用PTW30013次级标准电离室测量得出H-450 X射线参考辐射质下距离焦斑1 m,管电流为10 mA时的剂量率值为11.98 Gy/h,与理论值的相对误差为4.07 %。采用MCNP 5软件对H-450 X射线参考辐射质进行能谱模拟并计算得出其平均光子能量为200.4 keV。 相似文献
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当前真空紫外空间探测技术迅猛发展,真空紫外载荷应用越来越广,其中的核心器件真空紫外探测器的特性校准变得越来越重要,针对国内真空紫外探测器关键参数校准能力缺失问题,研制了一套真空紫外探测器关键参数校准装置,实现光谱响应率、线性度等参数的校准。论述了真空紫外探测器光谱响应率、线性度参数的校准方法,介绍了校准装置的硬件组成、校准方法和软件功能,并对其进行了测量不确定度评定。测试结果证明表明,该校准装置可以对真空紫外探测器进行主要参数的校准,校准结果准确、有效。 相似文献
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