首页> 外文期刊>The Astrophysical journal >RELATIVISTIC JET PROPERTIES OF GeV-TeV BLAZARS AND POSSIBLE IMPLICATIONS FOR THE JET FORMATION, COMPOSITION, AND CAVITY KINEMATICS
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RELATIVISTIC JET PROPERTIES OF GeV-TeV BLAZARS AND POSSIBLE IMPLICATIONS FOR THE JET FORMATION, COMPOSITION, AND CAVITY KINEMATICS

机译:GeV-TeV Blazars的相对论性射流特性及其对射流形成,组成和空穴运动的影响

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We fit the spectral energy distributions of a GeV-TeV flat spectrum radio quasar (FSRQ) sample with the leptonic model. Their γmin of the relativistic electron distributions, which significantly affect the estimate of the jet properties, are constrained, with a typical value of ~48. Their jet power, magnetized parameter, radiation efficiency, and jet production and radiation rates per central black hole (BH) mass are derived and compared with those of BL Lacertae (BL Lac) objects. We show that the FSRQ jets may be dominated by the Poynting flux and have a high radiation efficiency, whereas the BL Lac object jets are likely dominated by particles and have a lower radiation efficiency than FSRQs. Being different from BL Lac objects, the jet powers of FSRQs are proportional to their central BH masses. The jet production and radiation rates of the FSRQs distribute in narrow ranges and are correlated with each other, whereas no similar feature is found for the BL Lac objects. We also show that the jet power is correlated with the cavity kinetic power: the magnetic field energy in the jets may provide the cavity kinetic energy of FSRQs, and the kinetic energy of cold protons in the jets may be crucial for the cavity kinetic energy of BL Lac objects. We suggest that the dominating formation mechanism of FSRQ jets may be the Blandford-Znajek process, but BL Lac object jets may be produced via the Blandford-Payne and/or Blandford-Znajek processes, depending on the structures and accretion rates of accretion disks.
机译:我们将Leptonic模型拟合GeV-TeV平面谱无线电类星体(FSRQ)样本的谱能量分布。它们的相对论电子分布的γmin受显着影响,典型值约为48。推导了它们的射流功率,磁化参数,辐射效率以及每中心黑洞(BH)质量的射流产量和辐射率,并将其与BL Lacertae(BL Lac)物体的射流功率进行比较。我们表明,FSRQ射流可能受Poynting通量支配,并且具有较高的辐射效率,而BL Lac目标射流很可能受粒子支配,并且辐射效率比FSRQs低。与BL Lac对象不同,FSRQ的射流功率与其中心BH质量成正比。 FSRQ的射流产生和辐射速率分布在狭窄范围内,并且相互关联,而BL Lac对象没有发现类似特征。我们还表明,射流功率与腔动能相关:射流中的磁场能量可以提供FSRQs的腔动能,而射流中冷质子的动能可能对FSRQs的腔动能至关重要。 BL Lac对象。我们认为,FSRQ射流的主要形成机制可能是Blandford-Znajek过程,但BL Lac目标射流可能是通过Blandford-Payne和/或Blandford-Znajek过程产生的,具体取决于吸积盘的结构和吸积率。

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