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首页> 外文期刊>The Astrophysical journal >Red Galaxy Clustering in the NOAO Deep Wide-Field Survey
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Red Galaxy Clustering in the NOAO Deep Wide-Field Survey

机译:NOAO深广域调查中的红色星系聚类

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We have measured the clustering of 0.30 z 0.90 red galaxies and constrained models of the evolution of large-scale structure using the initial 1.2 deg2 data release of the NOAO Deep Wide-Field Survey (NDWFS). The area and BWRI passbands of the NDWFS allow samples of 103 galaxies to be selected as a function of spectral type, absolute magnitude, and photometric redshift. Spectral synthesis models can be used to predict the colors and luminosities of a galaxy population as a function of redshift. We have used PEGASE2 models, with exponentially declining star formation rates, to estimate the observed colors and luminosity evolution of galaxies and to connect, as an evolutionary sequence, related populations of galaxies at different redshifts. A red galaxy sample, with present-day rest-frame Vega colors of BW-R 1.44, was chosen to allow comparisons with the 2dF Galaxy Redshift Survey and Sloan Digital Sky Survey. We find the spatial clustering of red galaxies to be a strong function of luminosity, with r0 increasing from 4.4 ± 0.4 h-1 Mpc at MR - 5 log h ≈ -20.0 to 11.2 ± 1.0 h-1 Mpc at MR - 5 log h ≈ -22.0. Clustering evolution measurements using samples where the rest-frame selection criteria vary with redshift, including all deep single-band magnitude limited samples, are biased because of the correlation of clustering with rest-frame color and luminosity. The clustering of -21.5 MR - 5 log h -20.5, BW-R 1.44 galaxies exhibits no significant evolution over the redshift range observed with r0 = 6.3 ± 0.5 h-1 Mpc in comoving coordinates. This is consistent with recent ΛCDM models in which the bias of L* galaxies undergoes rapid evolution and r0 evolves very slowly at z 2.
机译:我们使用NOAO深广域测量(NDWFS)的初始1.2度2数据发布,测量了0.30 1.44,以便与2dF Galaxy Redshift Survey和Sloan Digital Sky Survey进行比较。我们发现红色星系的空间聚集是光度的强函数,r0从MR-5 log h≈-20.0时的4.4±0.4 h-1 Mpc增加到MR-5 log h时的11.2±1.0 h-1 Mpc。 ≈-22.0。由于聚类与静止帧颜色和亮度之间存在相关性,因此使用静止帧选择标准随红移而变化的样本(包括所有深单波段幅度受限样本)进行的聚类演化测量存在偏差。 -21.5 1.44星系的聚类在同移坐标中在r0 = 6.3±0.5 h-1 Mpc的红移范围内未显示出明显的演变。这与最近的ΛCDM模型一致,在该模型中,L *星系的偏差快速演化,而r0在z <2时演化非常缓慢。

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