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Calibration of Star-Formation Rate Measurements Across the Electromagnetic Spectrum

机译:电磁谱校准星形速率测量

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Star-formation is one of the main processes that shape galaxies, and together with black-hole accretion activity the two agents of energy production in galaxies. It is important on a range of scales from star clusters/OB associations to galaxy-wide and even group/cluster scales. Recently, studies of star-format ion in sub-galactic and galaxy-wide scales have met significant advances owing to: (a) developments in the theory of stellar evolution, stellar atmospheres, and radiative transfer in the interstellar medium; (b) the availability of more sensitive and higher resolution data; and (c) observations in previously poorly charted wavebands (e.g. Ultraviolet, Infrared, and X-rays). These data allow us to study more galaxies at ever-increasing distances and nearby galaxies in greater detail, and different modes of star formation activity such as massive star formation and low level continuous star formation in a variety of environments. In this contribution we summarize recent results in the fields of multi-wavelength calibrations of star-formation rate indicators, the Stellar Initial Mass function, and radiative transfer and modeling of the Spectrale Energy Disrtributions of galaxies.
机译:恒星形成是形状的主要过程之一,形成星系,以及黑洞吸收活动,在星系中的能量产生的两个代理。它对于从星集群/ ob关联到Galaxy-宽甚至组/群集尺度的一系列比例。最近,亚空气和银河系中的星形离子的研究符合:(a)恒星演化,恒星大气压理论的发展,在星际介质中的辐射转移的发展; (b)可用性更敏感和更高的分辨率数据; (c)在以前较差的波带(例如紫外线,红外和X射线)的观察。这些数据允许我们更详细地在不断增加的距离和附近的星系上学习更多的星系,以及在各种环境中诸如大规模的星形形成和低水平的连续星形形成的不同模式。在这一贡献中,我们总结了星形率指标,恒星初始质量函数的多波长校准领域的近期结果,以及星系的光谱能量变动的辐射转移和建模。

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