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1.
本采用荷兰Dwingloo射电天台的多通道频谱仪(4-8GHz)所观测到的一种典型的精细结构事例(Type Hand)来证实源区存在小尺度磁场结构以及电子的短时标加速过程。进一步根据实测和理论分析估算电子的平均速度大约为光速的十分之一,微磁流管直径大约为600km。以及在短时标(0.1s)加速过程中电子能量密度的演化。由此可见,在射电精细结构的动态频谱中含有极其丰富的物理信息,对太阳耀斑机制的  相似文献   

2.
太阳微波爆发中精细结构的统计研究   总被引:1,自引:0,他引:1  
本总结了北京天台1991年的2840MHz波段微波爆发中精细结构(FS)事件的观测。从FS的时间标度、强度、共生的微波爆发的峰值流量、FS发生在微波爆发的相位和FS与H。耀斑的关系等关系作了统计分子。发现约67%以上的FS其持续时间为几十毫秒到几百毫秒,85%以上的FS幅度小于200sfu,讨论了FS的时标、强度及22周太阳峰年期与21周FS出现率的差别。  相似文献   

3.
微波Ⅲ型爆发和微波尖峰辐射是太阳微波爆发中两个主要的精细结构,由于微波段比长波段的情况更复杂,单从形态上很难区分。1994 年Islike & Benz 给出13GHz 频带上的各类爆发分类定义,本文参考了其中关于微波Ⅲ型爆发和微波尖峰辐射的分类,分析北京天文台2 .63 .8GHz 频带上观测到的微波尖峰辐射的精细结构,发现该定义有局限性,重新定义了本波段上的微波Ⅲ型爆发和微波尖峰辐射,并讨论了这种分类定义与设备时间分辨率的关系  相似文献   

4.
我们用新的时间分辨率短至8ms 的2 .6 ~3 .8GHz 微波动态频谱仪在1998 年4 月15 日爆发和1997 年11 月3 日爆发中发现了微U 型爆发。其顶部频率为3 .2 ~3 .4GHz( 相应的等离子体密度:基波:1 .2 ×1011 - 1 .4 ×1011/cm 3 ,二次谐波:3 .2 ×1010 - 3 .5 ×1010/cm 3) ;根部频率为3 .4 ~3 .6GHz;单个U 型爆发的频率范围为60 ~220 MHz ;上升段频漂率为7 ~28GHz/s;上升段持续时间为8 ~24ms;寿命为16 ~48ms;偏振度大于80 % 。在活动区为偶极子磁场的假设下,估计源区高度约为1 .3 ×104 公里,单一环的高度为250 ~800 公里。由此得出结论:1 .由于高频漂率和高偏振度,似乎发现的微U 型爆发不是Ⅲ型爆发形成,而是尖峰辐射(Spike) 形成。2 .我们发现的是小尺度的微磁环,其尺度与Spike 辐射的寿命相当。我们在1997 年11 月2 日的爆发中发现平均周期为数十ms 的准周期振荡群。在高密度流管的磁声波MHD 振荡条件下,可取得磁环半径约90 公里的结果。由此可以得到微磁环物理尺度的图象  相似文献   

5.
本文总结了北京天文台1991年的2840MHz波段微波爆发中精细结构(FS)事件的观测.从FS的时间标度、强度、共生的微波爆发的峰值流量、FS发生在微波爆发的相位和FS与Hα耀斑的关系等方面作了统计分析.发现约67%以上的FS其持续时间为几十毫秒到几百毫秒,85%以上的FS幅度小于200sfu.讨论了FS的时标、强度及22周太阳峰年期与21周FS出现率的差别.  相似文献   

6.
根据1994年Islike&Benz给出的1-3GHz频带上的微波Ⅲ型爆发和微波尖峰幅身的分类定义,分析北京天台2.6-3.8GHZ频带上观测到的微波爆发的精细结构,通过分析发现该定义有局限性。本重新定义了该波段上的微波Ⅲ型爆发和微波尖峰辐身,并讨论了这种分类定义与设备时间分辨率的关系。  相似文献   

7.
根据1994年lslike&Benz给出的1-3GHz频带上的微波III型爆发和微波尖峰辐射的分类定义,分析北京天文台26-3.8GHz频带上观测到的微波爆发的精细结构.通过分析发现该定义有局限性.本文重新定义了该波段上的微波III型爆发和微波尖峰辐射,并讨论了这种分类定义与设备时间分辨率的关系  相似文献   

8.
利用日本“Yohkoh”卫星的资料及北京天台2840MHz的射电观测资料、对1992的6月7日的太阳爆发事件进行了分析。结果表明,在这次爆发的脉冲相期间存在着大小两种时间尺度的脉动分量,大尺度的脉动周期约为30s;小尺度脉动周期为1 ̄4s,利用硬X射线成像观测结果,发现大尺度的脉动与硬X射线源区的一系列变化相对应。中给出了一个环-环相互作用的MHD振荡调制物理图像。  相似文献   

9.
本文介绍了云南天文台四波段(1.42,2.13,2.84和4.26GHz)太阳射电高时间分辩率同步观测得到的五个微波II型爆发事件,它们具有宽频带、长和短寿命、内向和外向快速频漂等特征.观测事例表明,非热电子束引起的等离子体辐射和电子回旋脉泽辐射两种机制都可能发生.这些观测特征既不完全同于米波—分米波II型爆发,也不完全同于微波高频段II型爆发,说明在微波低频段可能存在二重性或过渡现象  相似文献   

10.
回顾了日冕磁的研究历史,介绍了我们首镒提出的日冕磁场的微波诊断方法及其应用的带来的启迪,提出进一步开展日冕磁场及其相关研究的建议。  相似文献   

11.
本文认为强磁场中的逆Compton散射可能是γ射线爆的主要辐射机制.其能谱是由源区质子产生的低频光子经强磁场中非热电子的Compton散射形成的.我们利用非相对论情形(B/B_(cr)≤1,hv_i/m_ec~2≤1)下强磁场中的Compton散射微分截面,导出了上述Compton散射的辐射谱公式,由此很好地拟合了典型γ射线爆GB811016的观测能谱.  相似文献   

12.
Guangli Huang 《Solar physics》2006,237(1):173-183
Based on the approximations of the non-thermal gyro-synchrotron radiation used by G.A. Dulk, and K.A. Marsh, Astrophs. J. 259, 350, 1982, the author analyses calculations of the propagation angle and coronal magnetic field self-consistently with brightness temperature, spectral index, frequency, turnover frequency, and polarization degree in solar microwave bursts. Hence, the coronal magnetic fields parallel and perpendicular to the line-of-sight in the sources of microwave bursts are calculated theoretically, and discussed in an event observed by the Nobeyama Radio Polarimeters (NoRP).  相似文献   

13.
太阳射电微波爆发及其精细结构研究进展   总被引:1,自引:0,他引:1  
太阳射电微波爆发携带着爆发源区的物理环境及辐射机制等诸多重要信息。其辐射频段较高,通常来自低日冕磁重联区,尤其是微波爆发的精细结构,持续时间短、变化快、结构复杂,可以反映重联过程复杂的磁场结构、高能粒子运动等许多特征。综述了太阳微波射电爆发分类研究的3个主要阶段,介绍了每一阶段的重要爆发类型、物理机制研究及相应的观测设备,讨论了进一步研究的方向。  相似文献   

14.
15.
Ledenev  V.G.  Karlický  M.  Yan  Y.  Fu  Q. 《Solar physics》2001,202(1):71-79
Solar radio emission observations in the microwave frequency range show fine structures consisting of a number of almost parallel narrow-frequency bands. We interpret these bands as plasma emission at cyclotron harmonics. This emission is generated by the anisotropic electron beam, which excites longitudinal waves at a normal Doppler effect resonance. Subsequently, the longitudinal waves convert to radio emission at the second harmonic of the longitudinal wave frequency, and sometimes to the fundamental harmonic. The magnetic field strength is estimated on the basis of such a model in the microwave burst sources at 100–200 G. Estimates of the density variations are also made.  相似文献   

16.
The microwave and hard X-ray characteristics of 13 solar flares that produced microwave fluxes greater than 500 solar flux units have been analyzed. These Great Microwave Bursts were observed in the frequency range from 3 to 35 GHz at Bern, and simultaneous hard X-ray observations were made in the energy range from 30 to 500 keV with the Hard X-Ray Burst Spectrometer on the Solar Maximum Mission spacecraft. The principal aim of this analysis is to determine whether or not the same distribution of energetic electrons can explain both emissions. The temporal and spectral behaviors of the microwaves as a function of frequency and the X-rays as a function of energy were tested for correlations, with results suggesting that optically thick microwave emission, at a frequency near the peak frequency, originates in the same electron population that produces the hard X-rays. The microwave emission at lower frequencies, however, is poorly correlated with emission at the frequency which appears to characterize this common source. A single-temperature and a multitemperature model were tested for consistency with the coincident X-ray and microwave spectra at microwave burst maximum. Four events are inconsistent with both of the models tested, and neither of the models attempts to explain the high-frequency part of the microwave spectrum. A source area derived on the basis of the single-temperature model agrees to within the uncertainties with the observed area of the one burst for which spatially resolved X-ray images are available.Swiss National Science Foundation Fellow from the University of Bern.Also Energy/Environmental Research Group, Incorporated, Tucson, Arizona, and Department of Physics and Astronomy, University of North Carolina, Chapel Hill. Present address: Johns Hopkins University Applied Physics Laboratory, Laurel, Maryland.  相似文献   

17.
Guangli Huang 《Solar physics》2009,257(2):323-334
The low-cutoff energy has a strong effect on the relationship between the radiation and electron spectral indices in both nonthermal gyrosynchrotron and bremsstrahlung theories. Hence, we have to calculate or fit the low-cutoff energy together with the electron spectral index as two independent parameters. Theoretical calculations of nonthermal gyrosynchrotron and bremsstrahlung radiations suggest a new method to obtain the exact solutions of the low-cutoff energy and the electron spectral index from the observable photon spectral indices at two adjacent energy or frequency bands (double power law). One flare on 10 June 2000 was studied as an example of the hard X-ray and microwave diagnostics for the low-cutoff energy and the electron spectral index. The results showed some differences between hard X-ray and microwave diagnostics.  相似文献   

18.
Huang  Guang-Li 《Solar physics》2000,196(2):395-402
The purpose of this paper is to investigate the crossing point of the power-law distribution lines calculated during different times of microwave and hard X-ray bursts. A linear correlation between the logarithm of the total density and the energy index of nonthermal electrons described by a power-law is proven to be a necessary condition for the crossing of a group of power-law distribution lines corresponding to the time evolution of the nonthermal electrons during a solar microwave and HXR burst. The common crossing point of these lines may be considered as evidence of a common cutoff energy of the nonthermal electrons responsible for gyrosynchrotron or bremsstrahlung radiation. When the common crossing point is close to the low-energy cutoff, the correlation coefficient is negative, and vice versa. The result may be useful for estimating the cutoff energy as well as the particle acceleration mechanism.  相似文献   

19.
Based on the single-fluid MHD model of Mars space simulation, this paper has studied the magnetic field structure in the near-Mars space and investigated the influence of Martian crustal magnetic anomalies on the magnetic field structure. In the process of the solar wind interaction with Mars, the bow shock and magnetic pile-up region are produced. The interplanetary magnetic lines are curved and deformed while they are towed toward the two poles by the solar wind. The majority of magnetic lines bypass the two poles, then leave behind a ‘V-shaped’ structure in the magnetotail behind Mars. In the crust of Mars, the local magnetic anomalies have a noticeable influence on the magnetic field structure. The magnetic anomalies at different positions and in different intensities interact with the solar wind to form the mini-magnetospheres of different structures and morphologies, such as the towed mini-magnetosphere and the mini-magnetosphere with open magnetic lines. The local magnetic anomalies have changed the near-Mars magnetic field structure, and probably changed the plasma distribution as well.  相似文献   

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