THE JET KINETIC LUMINOSITIES FOR THE UTR-2 SOURCES WITH THE STEEP LOW-FREQUENCY SPECTRA

A. P. Miroshnichenko
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Abstract

Earlier we have determined that the UTR-2 radio sources with steep linear spectra possess greater jet propagation velocity and lesser characteristic age than the UTR-2 radio sources with steep break spectra. Also examined galaxies and quasars with steep break spectra display greater mean values of the central black hole masses and mass accretion rates, than corresponding these for galaxies and quasars with steep linear spectra. Besides, as we have determined, the radio structure of the UTR-2 steep-spectrum sources is giant, its linear size has Mpc-scale. The source’s giant structure is formed by jets with enveloped radio lobes. So, this indicates on the powerful jets of the radio sources with the steep low-frequency spectra. Since the source jets are connected with the accretion disk of the source, it is important to examine relations of their physical characteristics. With this purpose we obtain estimates of the jet kinetic luminosity for the UTR-2 steep-spectrum sources on the assumption of the equality of the corresponding mass accretion rate and the jet matter flux. Using our calculated values of the jet propagation velocity and the mass accretion rate for the UTR-2 steep-spectrum galaxies and quasars, we estimate their jet kinetic luminosities. The obtained values of the jet kinetic luminosities are ~ 1045 erg/s, pointing out the great power of jets for the examined steep-spectrum sources. It is essential, that the examined objects display the relation of their kinetic luminosity and corresponding redshift (cosmological evolution).
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具有陡峭低频光谱的 utr-2 源的喷流动能光度
早些时候我们已经确定,与具有陡峭线性光谱的 UTR-2 射电源相比,具有陡峭断裂光谱的 UTR-2 射电源具有更大的喷流传播速度和更小的特征年龄。同时,与具有陡峭线性光谱的星系和类星体相比,具有陡峭断裂光谱的星系和类星体显示出更大的中心黑洞质量平均值和质量吸积率。此外,正如我们所确定的那样,UTR-2 陡峭光谱源的射电结构是巨型的,其线性大小具有 Mpc 尺度。该源的巨型结构是由射电裂片包裹的喷流形成的。因此,这表明具有陡峭低频谱线的射电源具有强大的喷流。由于射电源喷流与射电源的吸积盘相连,因此研究它们的物理特性关系非常重要。为此,我们在假设相应的质量吸积率和喷流物质通量相等的前提下,得到了 UTR-2 陡谱射电源的喷流动能光度的估计值。利用我们计算出的 UTR-2 陡光谱星系和类星体的喷流传播速度和质量吸积率值,我们估算出了它们的喷流动能光度。所获得的喷流动能光度值约为 1045 erg/s,这表明所研究的陡光谱源具有强大的喷流能力。重要的是,所研究的天体显示了它们的动能光度与相应红移(宇宙演化)的关系。
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