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The Astrophysics of Star Formation Across Cosmic Time at ≳10 GHz with the Square Kilometre Array

机译:平方公里阵列在≳10GHz范围内跨越宇宙时间的恒星形成的天体物理学

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摘要

In this chapter, we highlight a number of science investigations that are enabled by the inclusion of\udBand 5 (4.6-13.8 GHz) for SKA1-MID science operations, while focusing on the astrophysics of star formation over cosmic time. For studying the detailed astrophysics of star formation at highredshift, surveys at frequencies ≳10 GHz have the distinct advantage over traditional ~1.4 GHz\udsurveys as they are able to yield higher angular resolution imaging while probing higher rest frame frequencies of galaxies with increasing redshift, where emission of star-forming galaxies becomes dominated by thermal (free-free) radiation. In doing so, surveys carried out at ≳10 GHz provide a robust, dust-unbiased measurement of the massive star formation rate by being highly sensitive to the number of ionizing photons that are produced. To access this powerful star formation rate diagnostic requires that Band 5 be available for SKA1-MID. We additionally present a detailed science case for frequency coverage extending up to 30 GHz during full SKA2 operations, as this allows for highly diverse science while additionally providing contiguous frequency coverage between the SKA and ALMA, which will likely be the two most powerful interferometers for the coming decades. To enable this synergy, it is crucial that the dish design of the SKA be flexible\udenough to include the possibility of being fit with receivers operating up to 30 GHz.
机译:在本章中,我们重点介绍了通过将\ udBand 5(4.6-13.8 GHz)用于SKA1-MID科学操作而进行的许多科学研究,同时重点研究了宇宙时间内恒星形成的天体物理学。为了研究高红移下恒星形成的详细天体物理学,在≳10GHz频率下进行的测量相对于传统的〜1.4 GHz \测绘具有明显的优势,因为它们能够产生更高的角分辨率成像,同时探测随着红移增加而更高的星系静止帧频率,恒星形成星系的发射主要由热(自由)辐射主导。为此,通过对产生的电离光子数量高度敏感,在≳10GHz下进行的调查提供了强大的,无尘的质量恒星形成速率测量。要访问此功能强大的恒星形成率诊断,需要SKA1-MID使用Band 5。我们另外介绍了一个完整的SKA2操作期间,频率覆盖范围可扩展至30 GHz的详细科学案例,因为这可以实现高度多样化的科学,同时还可以在SKA和ALMA之间提供连续的频率覆盖范围,这很可能是两种最强大的干涉仪。未来几十年。为了实现这种协同作用,至关重要的是,SKA的碟形设计必须足够灵活,以使其适应运行在30 GHz以下的接收机。

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