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A Survey of Large Molecules of Biological Interest toward Selected High Mass Star Forming Regions

机译:对选定的高质量恒星形成区域的大分子生物兴趣的调查

摘要

We have surveyed three high mass Galactic star forming regions for interstellar methanol (CH3OH), formic acid (HCOOH), acetic acid (CH3COOH), methyl formate (HCOOCH3), methyl cyanide (CH3CN), and ethyl cyanide (CH3CH2CN) with the BIMA Array. From our observations, we have detected two new sources of interstellar HCOOH toward the hot core regions G19.61-0.23 and W75N. We have also made the first detections of CH3CH2CN and HCOOCH3 toward G19.61-0.23. The relative HCOOH/HCOOCH3 abundance ratio toward G19.61-0.23 is 0.18 which is comparable to the abundance ratios found by Liu and colleagues toward Sgr B2(N-LMH), Orion and W51(approximately 0.10). We have made the first detection of HCOOCH3 toward W75N. The relative HCOOH/HCOOCH3 abundance ratio toward W75N is 0.26 which is more than twice as large as the abundance ratios found by Liu and colleagues. Furthermore, the hot core regions around W75N show a chemical differentiation between the O and N cores similar to what is seen toward the Orion Hot Core and Compact Ridge and W3(OH) and W3(H2O). It is also apparent from our observations that the high mass star forming region G45.47+0.05 does not contain any compact hot molecular core and as a consequence its chemistry may be similar to cold dark clouds. Finally, the formation of CH3COOH appears to favor HMCs with well mixed N and O, despite the fact that CH3COOH does not contain a N atom. If proved to be true, this is an important constraint on CH3COOH formation and possibly other structurally similar biomolecules.
机译:我们用BIMA调查了星际甲醇(CH3OH),甲酸(HCOOH),乙酸(CH3COOH),甲酸甲酯(HCOOCH3),氰化甲烷(CH3CN)和氰化乙酯(CH3CH2CN)的三个高质量星系恒星形成区域数组。从我们的观察中,我们已经发现了两个朝向热核心区域G19.61-0.23和W75N的星际HCOOH的新来源。我们还对G19.61-0.23进行了CH3CH2CN和HCOOCH3的首次检测。相对于G19.61-0.23的HCOOH / HCOOCH3相对丰度比为0.18,这与Liu及其同事针对Sgr B2(N-LMH),Orion和W51的相对丰度比(约0.10)相当。我们已经对W75N进行了HCOOCH3的首次检测。相对于W75N的HCOOH / HCOOCH3相对丰度比为0.26,是Liu及其同事发现的丰度比的两倍多。此外,W75N周围的热核区域显示出O核和N核之间的化学差异,类似于Orion热核和致密脊以及W3(OH)和W3(H2O)的情况。从我们的观察结果还可以明显看出,高质量恒星形成区域G45.47 + 0.05不包含任何致密的热分子核,因此其化学性质可能类似于冷暗云。最后,尽管CH3COOH不包含N原子,但CH3COOH的形成似乎有利于N和O充分混合的HMC。如果证明是正确的话,这是对CH3COOH形成以及其他可能在结构上相似的生物分子的重要限制。

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