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首页> 外文期刊>The Astrophysical journal >CURRENT STAR FORMATION IN THE PERSEUS MOLECULAR CLOUD: CONSTRAINTS FROM UNBIASED SUBMILLIMETER AND MID-INFRARED SURVEYS
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CURRENT STAR FORMATION IN THE PERSEUS MOLECULAR CLOUD: CONSTRAINTS FROM UNBIASED SUBMILLIMETER AND MID-INFRARED SURVEYS

机译:Peresus分子云中的当前恒星形成:不受干扰的次球向和中红外测量的限制

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摘要

We present a census of the population of deeply embedded young stellar objects (YSOs) in the Perseus molecular cloud complex based on a combination of Spitzer Space Telescope mid-infrared data from the Cores to Disks (c2d) legacy team and JCMT SCUBA submillimeter maps from the COMPLETE team. The mid-infrared sources detected at 24μm and having [3.6]-[4.5] > 1 are located close to the center ofthe SCUBA cores, typically within 15" of their peaks. The narrowness of the spatial distribution of mid-infrared sources around the peaks of the SCUBA cores suggests that no significant dispersal of the newly formed YSOs has occurred. This argues against the suggestion that motions of protostars regulate the timescales over which significant (Bondi-Hoyle) accretion can occur. The YSOs are found to have red [3.6] - [4.5] and [8.0] - [24] colors, but not comparable red [5.8] - [8.0] colors. The most deeply embedded YSOs are found in regions with high extinction, A_V ≥ 5, similar to the extinction threshold observed for the SCUBA cores. All the SCUBA cores with high concentrations have embedded YSOs, but not all cores with low concentrations are starless. From the above considerations, a relatively unbiased sample of 49 deeply embedded YSOs is constructed. Embedded YSOs are found in 40 of the 72 SCUBA cores, with only three cores harboring multiple embedded YSOs within 15". The equal number of SCUBA cores with and without embedded YSOs suggests that the timescale for the evolution through the dense prestellar stages, where the cores are recognized in the submillimeter maps and have central densities of 5 × 10~4- 1 × 10~3 cm~(-3), is similar to the timescale for the embedded protostellar stages. The current star formation efficiency of cores is estimated to be approximately 10%-15%. In contrast, the star formation efficiency averaged over the cloud lifetime and compared to the total cloud mass is only a few percent, reflecting also the efficiency in assembling cloud material into the dense cores actually forming stars.
机译:我们根据从核心到磁盘(c2d)遗留团队的Spitzer空间望远镜中红外数据和来自完整的团队。在24μm处检测到的[3.6]-[4.5]> 1的中红外源位于SCUBA核心的中心附近,通常在其峰值的15“范围内。中红外源在空间周围的空间分布狭窄SCUBA岩心的峰值表明没有新散布的YSO发生明显散布,这与原恒星的运动调节着可能发生显着(Bondi-Hoyle)增生的时间尺度的说法背道而驰。YSO被发现具有红色[ 3.6]-[4.5]和[8.0]-[24]颜色,但没有可比较的红色[5.8]-[8.0]颜色,在消光程度高,A_V≥5的区域发现了嵌入最深的YSO,类似于消光观察到的SCUBA核的阈值,所有高浓度的SCUBA核都嵌入了YSO,但并非所有低浓度的核都没有恒星,基于以上考虑,构建了一个相对公正的49个深埋YSO样本。 40度f 72个SCUBA内核,只有三个内核在15英寸内包含多个嵌入式YSO。带有和不带有嵌入式YSO的SCUBA核心数量相等,表明通过密集的星前阶段演化的时间尺度,在亚毫米级图中可以识别出这些核心,并且中心密度为5×10〜4-1〜1×10〜3 cm 〜(-3)与嵌入式原恒星阶段的时间尺度相似。当前核芯的恒星形成效率估计约为10%-15%。相比之下,在整个云寿命中平均的恒星形成效率与总云量相比仅占百分之几,这也反映了将云材料组装到实际形成恒星的致密核中的效率。

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