首页> 外文期刊>The Astrophysical journal >RADIO GALAXIES AT z = 1.1 TO 3.8: ADAPTIVE OPTICS IMAGING AND ARCHIVAL HUBBLE SPACE TELESCOPE DATA
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RADIO GALAXIES AT z = 1.1 TO 3.8: ADAPTIVE OPTICS IMAGING AND ARCHIVAL HUBBLE SPACE TELESCOPE DATA

机译:z = 1.1至3.8时的无线电星系:自适应光学成像和太空望远镜望远镜数据

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We have undertaken a program of high-resolution imaging of high-redshift radio galaxies (HzRGs), using adaptive optics on the Canada-France-Hawaii Telescope. We report on deep imaging in J, H, and K bands of six HzRGs in the redshift range 1.1 to 3.8. At these redshifts, near-infrared bandpasses sample the rest-frame visible galactic light. The radio galaxy is resolved in all the fields and is generally elongated along the axis of the radio lobes. These images are compared with archival Hubble Space Telescope Wide-Field Planetary Camera 2 optical observations of the same fields and show that the HzRG morphology in rest-frame ultraviolet and visible light is generally very similar: a string of bright compact knots. Furthermore, this sample― although very small―suggests that the colors of the knots are consistent with light from young stellar populations. If that is the case, a plausible explanation is that these objects are being assembled by mergers at high redshift.
机译:我们已经使用加拿大-法国-夏威夷望远镜上的自适应光学系统,对高红移射电星系(HzRGs)进行了高分辨率成像。我们报告了在红移范围为1.1至3.8的六个HzRG的J,H和K波段的深部成像。在这些红移下,近红外带通对其余帧的可见银河光进行采样。射电星系在所有领域中都得到分解,并且通常沿着射电瓣的轴拉长。将这些图像与哈勃太空望远镜广角行星摄像机2在相同场上的光学观察结果进行了比较,结果表明,静止帧紫外线和可见光中的HzRG形态通常非常相似:一串明亮的紧凑结。此外,尽管样本很小,但暗示结的颜色与来自年轻恒星种群的光一致。如果是这样,一个合理的解释是这些对象是通过高红移合并来组装的。

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