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Science of Active Galactic Nuclei with the GTC andCanariCam

机译:具有GTC和CanariCam的主动银河系核科学

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CanariCam is the facility mid-infrared (MIR) instrument for the Gran Telescopio Canarias (GTC), a 10.4m telescope at the Observatorio del Roque de los Muchachos on La Palma. One of the science drivers for CanariCam is the study of active galactic nuclei (AGN). We will exploit the instrument's high sensitivity in imaging, spectroscopy, and polarimetry modes to answer fundamental questions of AGN and their host galaxies. Dust in the nucleus of an active galaxy reprocesses the intrinsic: radiation of the central engine to emerge in the MIR. Current work demonstrates that, the hot dust immediately associated with the AGN, which blocks direct views of the AGN from some lines of sight, is confined to small (parsec) scales. Thus, high spatial resolution is essential to probe the "torus" of unified AGN models separate from the host galaxy. CanariCam provides a 0.08" pixel scale for Nyquist sampling the diffraction-limited point spread function at 8μm, and narrow (0.2") spectroscopy slits (with R=120-1300). New observations with the GTC/CanariCam will provide key constraints on the physical conditions in the clumpy torus, and we will sensitively determine AGN obscuration as a function of nuclear activity. We will therefore address the fueling process and its relationship to the torus, the interaction with the host galaxy, and dust chemistry. These data will be essential preparation for the next generation of telescopes that will observe the distant universe directly to explore galaxy and black hole formation and evolution, and the GTC/CanariCam system uniquely provides multiple modes to probe AGN.
机译:CanariCam是用于Gran Telescopio Canarias(GTC)的设施中红外(MIR)仪器,这是位于拉帕尔玛岛上的Roque de los Muchachos天文台的10.4m望远镜。 CanariCam的科学驱动力之一是对活动银河核(AGN)的研究。我们将利用仪器在成像,光谱和偏振模式中的高灵敏度来回答AGN及其宿主星系的基本问题。活跃星系原子核中的尘埃会重新处理固有的:中央引擎的辐射会出现在MIR中。当前的工作表明,与AGN直接相关的热尘埃被限制在较小的范围内(视差),该热尘埃从某些视线阻挡了AGN的直接视线。因此,高空间分辨率对于探测与宿主星系分离的统一AGN模型的“重现”至关重要。 CanariCam为Nyquist提供8微米的衍射极限点扩展函数采样提供了0.08英寸的像素比例,并提供了窄的(0.2英寸)光谱狭缝(R = 120-1300)。使用GTC / CanariCam进行的新观测将提供对块状圆环中物理条件的关键约束,并且我们将敏感地确定AGN遮盖度是核活动的函数。因此,我们将讨论加油过程及其与圆环的关系,与主星系的相互作用以及粉尘化学。这些数据将为下一代望远镜提供必要的准备,这些望远镜将直接观察遥远的宇宙,以探索星系和黑洞的形成和演化,而GTC / CanariCam系统独特地提供了多种模式来探测AGN。

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