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首页> 外文期刊>The Astrophysical journal >XMM-Newton Observations of the TeV BL Lacertae Object PKS 2155–304 in 2006: Signature of Inverse Compton X-Ray Emission?
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XMM-Newton Observations of the TeV BL Lacertae Object PKS 2155–304 in 2006: Signature of Inverse Compton X-Ray Emission?

机译:2006年TeV BL Lacertae天体PKS 2155–304的XMM-牛顿观测:康普顿X射线反发射的特征?

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This paper reports the first discovery of possible inverse Compton (IC) X-ray emission below 10 keV in the typical high-energy peaked BL Lac object (HBL) PKS 2155–304. Two XMM-Newton observations performed in 2006 reveal that the 0.6-10 keV X-ray spectra of the source harden (Δ Γ ~ 0.1–0.3) at break energies of ~4 keV. The concave X-ray spectra of the source could be easily interpreted as a mixture of a steep component (i.e., the high-energy tail of the synchrotron emission) and a flat one (i.e., the low-energy side of the IC emission). However, the steep spectra (Γ ~ 2.3) in the hard X-rays indicate that the synchrotron emission still dominates over the IC one, while the latter is effectively present and perceived as flattening the synchrotron spectrum in this energy range. The quasi-simultaneous optical/UV/X-ray spectral energy distributions (SEDs) obtained with XMM-Newton suggest that the concave X-ray spectra of the source could be the result of downward shift of the synchrotron peak frequency to the optical band that causes the IC emission to become more important in the hard (~4-10 keV) X-ray band with respect to other cases in which the synchrotron emission peaks in the UV to soft X-ray range. This discovery provides a new clue for a smooth transition between HBLs and the low-energy peaked BL Lac objects (LBLs).
机译:本文报道了在典型的高能峰BL Lac物体(HBL)PKS 2155–304中低于10 keV的可能的反向康普顿(IC)X射线发射的首次发现。 2006年进行的两次XMM-Newton观测表明,在〜4 keV的断裂能下,源的0.6-10 keV的X射线光谱硬化了(ΔΓ〜0.1-0.3)。光源的凹面X射线光谱很容易解释为陡峭分量(即同步加速器发射的高能尾巴)和平坦分量(即IC发射的低能侧)的混合物。但是,硬X射线中的陡峭光谱(Γ〜2.3)表明,同步加速器的发射仍然在IC上占主导地位,而IC有效地存在并且被认为在该能量范围内使同步加速器谱变平。用XMM-Newton获得的准同时光学/ UV / X射线光谱能量分布(SED)表明,源的凹面X射线光谱可能是同步加速器峰值频率向下移至光带的结果。相对于同步辐射在UV到软X射线范围内达到峰值的其他情况,这会导致IC辐射在硬(〜4-10 keV)X射线带中变得更加重要。这一发现为HBL和低能峰BL Lac对象(LBL)之间的平稳过渡提供了新的线索。

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