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首页> 外文期刊>The Astrophysical journal >SIMULTANEOUS SOFT X-RAY AND GeV GAMMA-RAY OBSERVATIONS OF BL LACERTAE OBJECT AO 0235+164
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SIMULTANEOUS SOFT X-RAY AND GeV GAMMA-RAY OBSERVATIONS OF BL LACERTAE OBJECT AO 0235+164

机译:BL蕾丝科物体AO 0235 + 164的同时软X射线和GeV伽马射线观测

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We present data collected during a simultaneous GeV γ-ray (Compton Gamma Ray Observatory EGRET) and X-ray (ASCA) observation of BL Lac object AO 0235+164 (z = 0.94); we also present ROSAT PSPC X-ray data, obtained 6 months earlier. The X-ray spectra from both ROSAT and ASCA confirm a substantial photoelectric absorption beyond the value expected from our Galaxy, which is most likely caused by heavy elements in the inerstellar medium of an intervening galaxy at z = 0.524; it is possible to measure the elemental abundances in it modulo the hydrogen spin temperature T_s. By comparing the absorption in our data to the 21 cm absorption, we can limit T_s to at most ~700 K. The ROSAT data imply a rapid (~3 day) doubling of the soft X-ray flux and a subsequent quasi-exponential decay, whereas no variability is apparent in the ASCA or EGRET data. We detect a significant spectral change of the BL Lac X-ray continuum between the ROSAT and ASCA observations; ASCA data show that the spectrum is substantially harder (with the energy power-law index α ~ 1 vs. ~2) and fainter than in the ROSAT data. The simplest interpretation of this spectral variability is that the ROSAT data are dominated by a bright, soft tail of a synchrotron component, which disappeared during the ASCA observation, uncovering a harder Compton component. The EGRET data imply a lower GeV flux than in the previous observations, with no apparent change of the GeV spectrum. The ratio of the γ-ray to the X-ray flux [in E x F(E)] for this radio-discovered object is roughly 30, which is very substantially higher than that inferred for X-ray-discovered BL Lac objects, suggesting an important difference in the structure between the two subclasses of BL Lac objects.
机译:我们提出了同时BLV Lac物体AO 0235 + 164(z = 0.94)的GeVγ射线(康普顿伽玛射线天文台EGRET)和X射线(ASCA)观测期间收集的数据;我们还提供了6个月前获得的ROSAT PSPC X射线数据。 ROSAT和ASCA的X射线光谱证实了超出我们银河预期值的大量光电吸收,这很可能是由介于z = 0.524的中间星系的星际介质中的重元素引起的。有可能以氢自旋温度T_s为模来测量元素丰度。通过将我们的数据吸收与21 cm的吸收进行比较,我们可以将T_s限制为最大〜700K。ROSAT数据表示软X射线通量快速(〜3天)加倍,并且随后出现准指数衰减,而在ASCA或EGRET数据中则没有明显的可变性。我们检测到ROSAT和ASCA观测之间BL Lac X射线连续体的显着光谱变化; ASCA数据显示,光谱比ROSAT数据要硬得多(能量幂律指数α〜1对〜2),并且较弱。对这种光谱变异性的最简单解释是,ROSAT数据由同步加速器组件的明亮,柔软的尾部控制,该尾巴在ASCA观测过程中消失了,从而发现了较硬的Compton组件。 EGRET数据表明GeV通量比以前的观测值低,而GeV谱没有明显变化。此无线电发现的物体的γ射线与X射线通量之比[E x F(E)]大约为30,大大高于X射线发现的BL Lac物体的推断值,这表明BL Lac对象的两个子类之间在结构上存在重要差异。

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