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1.
本文对1990年7月30日云南天文台四波段(1.42GHz、2.00GHz、2.84GHz和4.00GHz)太阳射电高时间分辨率同步观测系统[1,2]所观测到的太阳射电大爆发进行了分析,对在1.42GHz、2.00GHz、2.84GHz三个波段上观测到的大量尖峰辐射(ms—spikes)作了关于寿命和强度的统计,最后,针对本次爆发中的ms—spikes的特点做了一些讨论。  相似文献   

2.
位于日冕微波区的微波Ⅲ型爆发界面频率的发现   总被引:3,自引:0,他引:3  
在北京天台1.0-2.0GHz射电频谱仪记录到的1994年1月5日爆发图上,首次发现一界面频率位于1240MHz与1340MHz之间的微波Ⅲ型爆发对,其频率漂率为-0.22GHz/s和+0.23GHz/s由此推出电子加速区位于光球之上,3.7×10^4km的高度,电子加速区及Ⅲ型爆发形成区的高度范围约为1000公里,而电子束的速度相应为0.102c及0.106c。  相似文献   

3.
分析了1993-10-020739.5-0745.0UT在2.840GHz-2.545GHz观测到的一次太阳射电爆发事件,证认了这次爆发的一部分是微波类II型爆发.计算结果表明,这次II型爆发是由速度为1.0×108m/s的相对论性电子束所引起的,产生电子束的源区背景温度为T~3×107K,射电爆发亮温度Tb~1012K,爆发源区的尺度L~3.4×102km.  相似文献   

4.
在北京天文台1.0-2.0GHz射电频谱仪记录到的1994年1月5日爆发图上,首次发现一界面频率位于1240MHz与1340MHz之间的微波II型爆发对,其频漂率为-0.22GHz/s和+0.23GHz/s.由此推出电子加速区位于光球之上3.7×104km的高度,电子加速区及II型爆发形成区的高度范围约为1000公里,而电子束的速度相应为0.102c及0.106c.  相似文献   

5.
根据不同的发射波模以及偏振态(偏振度与偏振方向)的快速时变特征,对1993年10月2日07:44:34-0.7:44:52:99UT期间的太阳射电事件进行了证认,认为这是一个由两群、总数约为40个尖峰(spike0结构组成的罕见的宽带事件,它的总带宽〉300MHz、相对带宽〈5%,根据它们在2.545GHz,2.645GHz,2.695GHz和2.840GHz上的流量资料,首次对一些spike结构  相似文献   

6.
对1998年6月29日云南天文台高时间分辨率射电望远镜观测到的微波超快速吸收现象进行了分析研究。在世界时07h38m50s至07h38m58s超快速吸收现象出现在太阳活动区NOAA/USAF5060上空的4.00GHz上,而在2.84GHz和1.42GHz上空出现的是spike辐射。当时,该活动区呈现出极其活跃的双极磁场位形。在世界时07h38m至08h47m先后产生了3B级和2B级的Haiqny  相似文献   

7.
分析了1993-10-02 0739.5-0745.0UT在2.840GHz-2.545GHz观测到的一次太阳射射电爆发事件,证认了这次爆发的一部分是微波类Ⅲ型爆发。计算结果表明,这次Ⅲ型爆发是由速度为1.0×10^8m/s的相对论性电子束所引起的,产生电子束的源区背景温度为T-3×10^7K,射电爆发亮温度Tb=10612K,爆发源区的悄度L-3.4×10^2km。  相似文献   

8.
一个含有丰富快速精细结构的射电大爆发   总被引:2,自引:2,他引:0  
本文对1990年7月30日云南天文台四波段太阳射电高时间分辨率同步观测系统^「1,2」所观测到的太阳射电大爆发进行了分析,对在1.42GHz,2.00GHz,2.84GHz三个波段上观测到的大量尖峰辐射作了关于寿命和强度的统计,最后,针对本次爆发中的ms-spikes的特点做了一些讨论。  相似文献   

9.
用美国甚大阵(VLA)对色球活动性双星系统UXAri进行了从1.4GHz到15GHz范围内五个频段的观测,观测期间UXAri处于活动性比较低的阶段,射电光度为(6.6-12.6)×1016ergs-1Hz-1.射电频谱低频部分比较平坦,高频呈幂律形式,低频的圆偏振度很低,趋于零,高频辐射有中等圆偏振度(15%).射电发射机制可能是回旋同步加速机制,由此我们估计出发射区的磁场强度为几至几十高斯,相对论电子密度为~104-102cm-3量级,热电子数密度~108cm-3。  相似文献   

10.
谢瑞祥  汪敏 《天文学报》1996,37(2):187-200
作为微耀斑能量释放的证据,本文扼要介绍了云南天文台“四频率太阳射电高时间分辨率同步观测系统”(1.42,2.13,2.84和4.26GHz)1989年12月-1993年4月的观测事例,包含低强度的毫秒尖峰辐射(msspike),类尖峰辐射(spike-like),快速脉动现象,两种新的快速精细结构──微波Ⅲ型爆和微波类斑点结构.统计了快速精细结构的寿命,在统计基础上分别以实例描述了各类现象的观测特征.  相似文献   

11.
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   

12.
太阳射电爆发的起因:耀斑或/和日冕物质抛射   总被引:2,自引:0,他引:2  
本文分析了近二十年来的地面和空间太阳有关观测资料,得出太阳射电爆发的起因为耀斑和/ 或日冕物质抛射(CME) 而不仅仅是耀斑,这将有利于更深刻地了解太阳射电爆发和共生高能现象的物理过程  相似文献   

13.
俞雪华  徐民健 《天文学报》1995,36(4):359-366
本文采用等离子体动力学方法,研究了日冕条件下磁化非相对论热等离子体对太阳射电辐射产生的电子回旋共振吸收,并在辐射频率等于电子回旋谐波频率时求得n≥2谐波吸收率的近似表示式,以及其对等离子体温度,出射角度和谐波数的变化规律,在应用部分,讨论了电子回旋共振吸收对于太阳射电尖峰爆发的影响,认为目前观测到的尖峰爆,大多数高能电子束来自日冕的内层。  相似文献   

14.
GRB主爆后,火球继续膨胀,根据暴后火球的动力学演化方程,考虑电子的分布随时间的变化,通过数值求解,得到光学R波段和X射线余辉与时间t的关系。计算结果与观测结果相比较,符合得很好。最后,还讨论了火球+激波模型的不足。  相似文献   

15.
Willes  A. J.  Melrose  D. B. 《Solar physics》1997,171(2):393-418
The process of second harmonic plasma emission is considered, where two simplifying approximations made in previous treatments are relaxed. The revised theory can account for strong polarisation observed in some harmonic coronal type III bursts, and predicts that a correlation between these bursts and the fastest electron beam speeds associated with type III emission should be apparent. These high observed degrees of polarisation could not be explained in the earlier theory. In most cases, polarisation in the sense of the magnetoionic o-mode is predicted. The predicted degree of polarisation is shown to be strongly dependent on the form of the Langmuir wave number spectrum, and in particular on the magnitude of the wave number offset between beam-driven and backscattered Langmuir waves.  相似文献   

16.
On March 11, 2007, the INTEGRAL observation discovered and localized a gamma-ray burst in the sky from which an early infrared afterglow was then detected. We present our timing and spectral analyses of the data from the ISGRI detector of the IBIS telescope. The burst consists of one ~40-s-long peak during which a fluence of ~3 × 10?6 erg cm?2 was released in the energy range 20–200 keV. The 18–300-keV spectrum is characterized by a slope Γ ≈ ?0.8 at the rise phase and Γ ≈ ?1.4 at the maximum and decay phase. The basic characteristics of GRB 070311 suggest that it is a typical cosmological gamma-ray burst.  相似文献   

17.
It has been suggested by Usov (1992) that accreting white dwarfs, collapsing to neutron stars may be the sources of the gamma-ray bursts observed at cosmological distances, provided they rotate very fast and have enormously high magnetic fields. In this model the burst's duration is given by the ratio of pulsar kinetic energy and magneticdipole luminosity, so that in order to account for the shortest ( 0.1 s) bursts, the pulsars must rotate very fast (with periodP 0.5 ms) and have magnetic fields of 1016 - 1017 G. Though the high pulsar frequency was anticipated (Qadir and Rafique, 1986) and has been shown to be plausible (Abramowicz, 1990), the extremely high magnetic fields seem anomalous as observed neutron stars have fields below 1013 G.The problem with Usov's proposal is reduced by incorporating the relativistic corrections for fast rotating magnetic dipoles (Belinskyet al., 1994) or magnetic stars (De Paolis and Qadir, 1994). These corrections substantially enhance the radiation efficiency due to the existence of a magnetic synchrotron effect so that the magnetic field required for the explanation of the shortest gamma-ray bursts is strongly reduced. As such the model becomes much more plausible.  相似文献   

18.
In the relativistic fireball model, the afterglow of a gamma-ray burst (GRB) is produced by synchrotron radiation of the electrons accelerated in the external shock that emerges as the relativistic flow moves. According to this model, the afterglow peaks on a time scale of ~10 s when observed in the soft gamma-ray band. The peak flux can be high enough to be detected by modern all-sky monitors. We investigate the emission from short (ΔT<1 s) GRBs on a time scale t≈10 s using BATSE/CGRO data. A significant flux is recorded for ~20% of the events. In most cases, the observed persistent emission can be explained in terms of the model as an early burst afterglow. No early afterglows of most short GRBs are observed. The model parameters for these bursts are constrained.  相似文献   

19.
In four years BATSE has observed more than 1000 gamma-ray bursts, making unprecedented measurements of their spatial and brightness distributions. These measurements and their implications for the origin of gamma-ray bursts are reviewed.  相似文献   

20.
We searched for anomalously long gamma-ray bursts (GRBs) in the archival records of the Burst and Transient Sources Experiment (BATSE). Ten obvious superlong (>500 s) GRBs with almost continuous emission episodes were found. Nine of these events were known from the BATSE catalog, but five had no duration estimates; we found one burst for the first time. We also detected events with emission episodes separated by a long period of quiescence (up to ~1000 s) with a total duration of 1000–2000 s. In the latter case, we cannot reach an unequivocal conclusion about a common origin of the episodes due to the BATSE poor angular resolution. However, for most of these pairs, the probability of independent GRBs coinciding is much lower than unity, and the probability that all of these are coincidences is ~10?8. All of the events have a hardness ratio (the ratio of the count rates in different energy channels) typical of GRBs, and their unique duration is unlikely to be related to their high redshifts. Superlong bursts do not differ in their properties from typical long (>2 s) GRBs. We estimated the fraction of superlong GRBs (>500 s) among the long (>2 s)GRBs in the BATSE sample with fluxes up to 0.1 ph cm?2 s?1 to be between 0.3 and 0.5%, which is higher than the estimate based on the BATSE catalog.  相似文献   

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