论文标题
Astrosat紫外线深场北:远处和近距离紫外线光度表目录
The AstroSat UV Deep Field North: the far and near ultraviolet photometric catalog
论文作者
论文摘要
我们使用一个Far-UV(F154W,34.0 KOLOSEC)和两个近野过滤器(N242W,19.2千克; N242 ky; n245m5m,n245m5m,15.5m,15.5m,15.5m,15.5m,15.5m,15.5m,15.5千克,我们介绍了北部(Goods-n)北部(Goods-N)领域的深紫外成像观测。在整个UVIT场上探索了紫外天空背景的性质,并估计了每个滤镜的全局平均值和RMS。我们达到$ M _ {\ rm ab} $ $ $ \ sim $ 27.35 mag,27.28 mag和27.02 mag的3 $σ$检测极限分别为F154W,N242W和N245M频段。 FUV和NUV图像的50 \%完整性限制分别为$ m _ {\ rm ab} = $ 26.40 mag和27.05 mag。我们为每个频段构建了PSF并估算了它们的FWHM,发现它们几乎相同:1.18“在F154W中,N242W中的N245M中的1.11”,在N245M中为1.24“。我们使用Sextractor分别识别FUV和NUV滤波器中的源和NUV滤波器中的源,并产生整个Auduv的UV源代码。 MAG $^{ - 1} $(在19-25 mag之间)和0.44 Dex mag $^{ - 1} $(在18-25 mag之间),目录中包含6839和16171的来源(比50 \%的完整性限制),分别在FUV和NUV中列出了我们的fuv和NUV尺寸。使我们能够在Redshift $ z <1 $上探测星系的静止框架属性,并在RedShift $ z> 0.97 $上搜索候选Lyman Continuum Continuum Continuum泄漏者。
We present deep UV imaging observations of the Great Observatories Origins Survey Northern (GOODS-N) field with AstroSat/UVIT (AstroSat UV Deep Field north - AUDFn), using one far-UV (F154W, 34.0 kilosec) and two near-UV filters (N242W, 19.2 kilosec; N245M, 15.5 kilosec). The nature of the UV sky background was explored across the UVIT field and a global mean and rms was estimated for each filter. We reach 3$σ$ detection limits of $m_{\rm AB}$ $\sim$ 27.35 mag, 27.28 mag and 27.02 mag for a point source in the F154W, N242W and N245M bands respectively. The 50\% completeness limits of the FUV and NUV images are $m_{\rm AB}=$ 26.40 mag and 27.05 mag respectively. We constructed PSFs for each band and estimated their FWHM, which were found to be almost the same: 1.18" in F154W, 1.11" in N242W, and 1.24" in N245M. We used SExtractor to separately identify sources in the FUV and NUV filters and produce the UV source catalog of the entire AUDFn field. The source count slope estimated in FUV and NUV is 0.57 dex mag$^{-1}$ (between 19 - 25 mag) and 0.44 dex mag$^{-1}$ (between 18 - 25 mag), respectively. The catalog contains 6839 and 16171 sources (brighter than the 50\% completeness limit) in the FUV and NUV, respectively. Our FUV and NUV flux measurements of the identified sources complement existing multi-band data in the GOODS-N field, and enable us to probe rest-frame FUV properties of galaxies at redshift $z < 1$ and search for candidate Lyman continuum leakers at redshift $z > 0.97$.