论文标题

以厘米的波长搜索丙酰胺(C2H5Conh2)朝向射手座B2

Searching for Propionamide (C2H5CONH2) Toward Sagittarius B2 at Centimeter Wavelengths

论文作者

Schuessler, Caden, Remijan, Anthony, Xue, Ci, Carder, Joshua, Scolati, Haley, McGuire, Brett

论文摘要

星际培养基(ISM)中分子的形成仍然是一个复杂且尚未解决的问题。一组特定利益的分子涉及 - 羧基和胺基的连接,类似于肽键。 ISM中包含这些肽样键的分子的检测可以帮助阐明可能的形成机理,并指示ISM某些区域内可用的分子复杂性水平。先前已经检测到符合恒星形成区域Sagittarius B2(SGR B2)的两个最简单的分子,其中两个含有肽样键,甲酰胺(NH2CHO)和乙酰酰胺(CH3Conh2)(CH3Conh2)。最近,报告了丙酰胺(C2H5CONH2)的星际检测朝向SGR B2(N),并在毫米波长处进行ALMA观测值。然而,由于从任何未经污染的过渡中尚无统计学上显着的线排放,因此其他人对同一一组ALMA观察的质疑。使用PRRBIOTIC星际分子调查(PRIMOS)观察结果,我们报告了以绿色库望远镜进行的厘米波长对C2H5CONH2的额外搜索。未检测到C2H5Conh2的光谱特征。确定C2H5CONH2在厘米波长下的上限小于1.8E14 cm-2,并且发现C2H5Conh2/CH3ConH2比的上限小于2.34。这项工作再次质疑C2H5Conh2的初始检测,并表明更复杂的肽样结构可能在ISM中形成困难,或低于当前天文学设施的检测限制。提供了其他与结构相关的物种,以帮助未来的实验室和天文搜索。

The formation of molecules in the interstellar medium (ISM) remains a complex and unresolved question in astrochemistry. A group of molecules of particular interest involves the linkage between a -carboxyl and -amine group, similar to that of a peptide bond. The detection of molecules containing these peptide-like bonds in the ISM can help elucidate possible formation mechanisms, as well as indicate the level of molecular complexity available within certain regions of the ISM. Two of the simplest molecules containing a peptide-like bond, formamide (NH2CHO) and acetamide (CH3CONH2), have previously been detected toward the star forming region Sagittarius B2 (Sgr B2). Recently, the interstellar detection of propionamide (C2H5CONH2) was reported toward Sgr B2(N) with ALMA observations at millimeter wavelengths. Yet, this detection has been questioned by others from the same set of ALMA observations as no statistically significant line emission was identified from any uncontaminated transitions. Using the PRrbiotic Interstellar MOlecule Survey (PRIMOS) observations, we report an additional search for C2H5CONH2 at centimeter wavelengths conducted with the Green Bank Telescope. No spectral signatures of C2H5CONH2 were detected. An upper limit for C2H5CONH2 at centimeter wavelengths was determined to be less than 1.8e14 cm-2 and an upper limit to the C2H5CONH2/CH3CONH2 ratio is found to be less than 2.34. This work again questions the initial detection of C2H5CONH2 and indicates that more complex peptide-like structures may have difficulty forming in the ISM or are below the detection limits of current astronomical facilities. Additional structurally related species are provided to aid in future laboratory and astronomical searches.

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