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首页> 外文期刊>The Astrophysical journal >ELECTRON-ION EQUILIBRIUM AND SHOCK PRECURSORS IN THE NORTHEAST LIMB OF THE CYGNUS LOOP
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ELECTRON-ION EQUILIBRIUM AND SHOCK PRECURSORS IN THE NORTHEAST LIMB OF THE CYGNUS LOOP

机译:天鹅环东北缘的电子离子平衡和激震前兆

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We present an observational study using high-resolution echelle spectroscopy of collisionless shocks in the Cygnus Loop supernova remnant. Measured Hα line profiles constrain pre-shock heating processes, shock speeds, and electron-ion equilibration (Te /Ti ). The shocks produce faint Hα emission line profiles, which are characterized by narrow and broad components. The narrow component is representative of the pre-shock conditions, while the broad component is produced after charge transfer between neutrals entering the shock and protons in the post-shock gas, thus reflecting the properties of the post-shock gas. We observe a diffuse Hα region extending about 25 ahead of the shock with line width ~29 km s–1, while the Hα profile of the shock itself consists of broader than expected narrow (36 km s–1) and broad (250 km s–1) components. The observed diffuse emission arises in a photoionization precursor heated to about 18,000?K by He I and He II emission from the shock, with additional narrow component broadening originating from a thin cosmic-ray precursor. Broad to narrow component intensity ratios of ~1.0 imply full electron-ion temperature equilibration Te Ti in the post-shock region. Broad component line widths indicate shock velocities of about 400 km s–1. Combining the shock velocities with proper motions suggests that the distance to the Cygnus Loop is ~890?pc, significantly greater than the generally accepted upper limit of 637?pc.
机译:我们目前在Cygnus Loop超新星残余中使用无碰撞冲击的高分辨率阶梯光谱进行观察研究。测得的Hα线轮廓限制了电击前的加热过程,电击速度和电子离子平衡(Te / Ti)。冲击产生微弱的Hα发射谱线,其特征是狭窄和宽泛。较窄的分量代表了震前条件,而较宽的分量是在进入激波的中性粒子和震后气体中的质子之间的电荷转移之后产生的,因此反映了震后气体的特性。我们观察到一个弥散的Hα区域,在震荡之前约25处延伸,线宽约为29 km s-1,而震荡的Hα剖面本身包括比预期的窄(36 km s-1)和较宽(250 km s)的范围–1)组件。观察到的弥散发射发生在通过电离的He I和He II发射加热到约18,000?K的光电离前驱体中,另外一个狭窄的成分展宽来自薄宇宙射线前驱体。约1.0的宽至窄组分强度比意味着在电击后区域中电子离子温度达到完全平衡。较宽的分量线宽度表示冲击速度约为400 km s-1。将冲击速度与适当的运动相结合,表明与天鹅环的距离约为890?pc,远大于公认的637?pc上限。

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