论文标题

MOSDEF调查:在Z〜2的空间分辨出恒星种群上提高了Voronoi Binning技术

The MOSDEF Survey: An Improved Voronoi Binning Technique on Spatially Resolved Stellar Populations at z~2

论文作者

Fetherolf, Tara, Reddy, Naveen, Shapley, Alice, Kriek, Mariska, Siana, Brian, Coil, Alison, Mobasher, Bahram, Freeman, William, Sanders, Ryan, Price, Sedona, Shivaei, Irene, Azadi, Mojegan, de Groot, Laura, Leung, Gene, Zick, Tom

论文摘要

我们使用Mosfire Deep Evolution Field调查的350个恒星星系的样本,价格为$ 1.25 <z <2.66 $,以证明我们使用的改进的Voronoi Binning技术,我们用来研究$ Z \ SIM2 $ GALAXIES中解决的恒星种群的特性。恒星种群和防尘图是由高分辨率烛台/3D-HST多波段成像构建的。与其构建$ h_ {160} $的s/n分布的解决元素的布局(即voronoi bins) - 单独介绍了一种修改的voronoi binning方法,该方法还结合了几个分辨率过滤器的S/N分布。 SED衍生的已解决的E(B-V)$ _ {\ Text {Stars}} $,从多个过滤器中构建的Voronoi Bins推断出的明星人口年龄,SFRS和出色的群众通常与从不可分割的属性中推断出的属性一致,而不是非凡的属性。 e(b-v)$ _ {\ text {stars}} $从我们的$ z \ sim1.5 $样本中,由于其紫外斜率不受已解决的光度法的约束。将我们的多滤波器Voronoi Binning技术的结果与来自“传统”单滤波器Voronoi Binning方法的结果进行了比较。我们发现,单滤波器binning会产生推断的E(b-v)$ _ {\ text {stars}} $,这些杂物平均会系统地红色0.02 mag,但最多可能会差异为0.20 mag,并且可能归因于覆盖UV缝隙的约束分辨率较差。总体而言,我们提倡我们的方法论会产生更可靠的SED衍生参数,因为最合适的解决的SED在所有分辨波长方面都可以更好地限制 - 尤其是那些覆盖紫外线斜率的波长。

We use a sample of 350 star-forming galaxies at $1.25<z<2.66$ from the MOSFIRE Deep Evolution Field survey to demonstrate an improved Voronoi binning technique that we use to study the properties of resolved stellar populations in $z\sim2$ galaxies. Stellar population and dust maps are constructed from the high-resolution CANDELS/3D-HST multi-band imaging. Rather than constructing the layout of resolved elements (i.e., Voronoi bins) from the S/N distribution of the $H_{160}$-band alone, we introduce a modified Voronoi binning method that additionally incorporates the S/N distribution of several resolved filters. The SED-derived resolved E(B-V)$_{\text{stars}}$, stellar population ages, SFRs, and stellar masses that are inferred from the Voronoi bins constructed from multiple filters are generally consistent with the properties inferred from the integrated photometry within the uncertainties, with the exception of the inferred E(B-V)$_{\text{stars}}$ from our $z\sim1.5$ sample due to their UV slopes being unconstrained by the resolved photometry. The results from our multi-filter Voronoi binning technique are compared to those derived from a "traditional" single-filter Voronoi binning approach. We find that single-filter binning produces inferred E(B-V)$_{\text{stars}}$ that are systematically redder by 0.02 mag on average, but could differ by up to 0.20 mag, and could be attributed to poorly constrained resolved photometry covering the UV slope. Overall, we advocate that our methodology produces more reliable SED-derived parameters due to the best-fit resolved SEDs being better constrained at all resolved wavelengths--particularly those covering the UV slope.

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