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On the Optimization of Broadband Photometry for Galaxy Evolution Studies

机译:星系演化研究的宽带光度法优化

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We have derived the uncertainties to be expected in the derivation of galaxy physical properties (star formation history, age, metallicity, and reddening) when comparing broadband photometry to the predictions of evolutionary synthesis models. We have obtained synthetic colors for a large sample (~9000) of artificial galaxies by assuming different star formation histories, ages, metallicities, reddening values, and redshifts. The colors derived have been perturbed by adopting different observing errors and compared against the evolutionary synthesis models grouped in different sets. The comparison has been performed using a combination of Monte Carlo simulations, a maximum likelihood estimator, and principal component analysis. After comparing the input and derived output values we have been able to compute the uncertainties and covariant degeneracies between the galaxy physical properties as a function of (1) the set of observables available, (2) the observing errors, and (3) the galaxy properties themselves. In this work we have considered different sets of observables, some of them including the standard Johnson-Cousins (UBVRCIC) and Sloan Digital Sky Survey (SDSS) bands in the optical, the Two Micron All-Sky Survey (2MASS) bands in the near-infrared, and the Galaxy Evolution Explorer (GALEX) bands in the UV, at three different redshifts, z = 0.0, 0.7, and 1.4. This study is intended to represent a basic tool for the design of future projects on galaxy evolution, allowing an estimate of the optimal bandpass combinations and signal-to-noise ratios required for a given scientific objective.
机译:当将宽带光度法与进化合成模型的预测进行比较时,我们已经得出了在推论银河物理特性(恒星形成历史,年龄,金属性和变红)方面预期的不确定性。通过假设不同的恒星形成历史,年龄,金属性,变红值和红移,我们已经获得了大样本(约9000个)人造星系的合成色。通过采用不同的观察误差扰乱了派生的颜色,并与分组在不同集合中的进化合成模型进行了比较。使用蒙特卡洛模拟,最大似然估计器和主成分分析的组合进行了比较。比较输入值和导出的输出值后,我们已经能够计算出银河物理性质之间的不确定性和协变简并性,它是(1)一组可观测量,(2)观测误差和(3)星系的函数属性本身。在这项工作中,我们考虑了不同的可观测集合,其中一些包括光学中的标准Johnson-Cousins(UBVRCIC)和Sloan数字天空测量(SDSS)波段,以及附近的两个微米全天空测量(2MASS)波段。 -红外,以及UV中的Galaxy Evolution Explorer(GALEX)波段,具有三个不同的红移,z = 0.0、0.7和1.4。这项研究旨在代表设计未来星系演化项目的基本工具,从而可以估算给定科学目标所需的最佳带通组合和信噪比。

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