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The Herschel View of Star Formation

机译:恒星形成的赫歇尔视图

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Recent studies of the nearest star-forming clouds of the Galaxy at submillimeter wavelengths with the Herschel Space Observatory have provided us with unprecedented images of the initial conditions and early phases of the star formation process. The Herschel images reveal an intricate network of filamentary structure in every interstellar cloud. These filaments all exhibit remarkably similar widths - about a tenth of a parsec - but only the densest ones contain prestellar cores, the seeds of future stars. The Herschel results favor a scenario in which interstellar filaments and prestellar cores represent two key steps in the star formation process: first turbulence stirs up the gas, giving rise to a universal web-like structure in the interstellar medium, then gravity takes over and controls the further fragmentation of filaments into prestellar cores and ultimately protostars. This scenario provides new insight into the inefficiency of star formation, the origin of stellar masses, and the global rate of star formation in galaxies. Despite an apparent complexity, global star formation may be governed by relatively simple universal laws from filament to galactic scales.
机译:最近对具有Herschel Spaceation的亚克斯波长的最近星形形成云的研究已经为我们提供了前所未有的初始条件和星形成过程的早期阶段的图像。 Herschel图像在每个星际云中都显示了一种复杂的丝状结构网络。这些长丝均表现出显着相似的宽度 - 大约十分之一的Parsec - 但只有最密任的含量含有普雷斯特拉尔核心,未来恒星的种子。赫歇尔结果支持在星际丝和星前期核心代表了恒星形成过程中的两个关键步骤的情形:第一湍流激起的气体,在星际介质中便出现了普遍的网状结构,那么重力接管和控制长丝进一步破碎到普雷斯特拉尔核心并最终的抗原。这种情况提供了新的洞察明星形成,恒星群众的起源和星系中的全球明星形成率的洞察力。尽管存在明显的复杂性,但全球明星形成可能受到丝网到银河系统的相对简单的普遍法。

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