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相关论文: Interstellar glycolamide: A comprehensive rotation…

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We report the first detection in the interstellar medium of a C$_2$H$_5$O$_2$N isomer: $syn$-glycolamide (NH$_2$C(O)CH$_2$OH). The exquisite sensitivity at sub-mK levels of an ultra-deep spectral survey carried out with the Yebes 40m and…

Glycinamide is considered to be one of the possible precursors of the simplest amino acid glycine. Its only rotational spectrum reported so far has been in the cm-wave region. The aim of this work is to extend its laboratory spectrum into…

For all the amides detected in the interstellar medium (ISM), the corresponding nitriles or isonitriles have also been detected in the ISM, some of which have relatively high abundances. Among the abundant nitriles for which the…

Understanding whether prebiotic molecules can endure and reform through the energetic stages of star formation is essential for tracing the continuity of interstellar chemistry toward life. Glycolamide, an isomer of glycine, was recently…

星系天体物理 · 物理学 2026-05-06 Chunguo Duan , Fengwei Xu , Qian Gou , Xuefang Xu , Donghui Quan , Laurent Pagani , Xi Chen , Jun Kang , Jiaxin Du

Numerous complex organic molecules have been detected in the universe among which amides are considered as models for species containing the peptide linkage. Acrylamide bears in its backbone not only the peptide bond, but also the vinyl…

Glycine-the simplest amino acid-has remained undetected in the interstellar medium despite decades of sensitive searches, motivating alternative approaches to constrain its astrochemical origin. A promising strategy is to investigate the…

星系天体物理 · 物理学 2026-05-11 Chunguo Duan , Fengwei Xu , Jun Kang , Qian Gou , Xuefang Xu , Laurent Pagani , Jiaxin Du , Xi Chen

We have used the Australia Telescope Compact Array to conduct a search for the simplest amino acid, glycine (conformers I and II), and the simple chiral molecule propylene oxide at 3-mm in the Sgr B2 LMH. We searched 15 portions of spectrum…

天体物理学 · 物理学 2008-11-26 P. A. Jones , M. R. Cunningham , P. D. Godfrey , D. M. Cragg

The discovery of amino acids in meteorites and the detection of glycine in samples returned from a comet to Earth suggest that the interstellar chemistry is capable of producing such complex organic molecules. Our goal is to investigate the…

星系天体物理 · 物理学 2014-08-25 Arnaud Belloche , Holger S. P. Müller , Karl M. Menten , Peter Schilke , Claudia Comito

Glycolaldehyde, a sugar-related interstellar prebiotic molecule, has recently been detected in two star-forming regions, Sgr B2(N) and G31.41+0.31. The detection of this new species increased the list of complex organic molecules detected…

星系天体物理 · 物理学 2012-03-06 A. Bouchez , L. Margules , R. A. Motiyenko , J-C. Guillemin , A. Walters , S. Bottinelli , C. Ceccarelli , C. Kahane

In 2003, Kuan, Charnley, and co-workers reported the detection of interstellar glycine (NH2CH2COOH) based on observations of 27 lines in 19 different spectral bands in one or more of the sources Sgr B2(N-LMH), Orion KL, and W51 e1/e2. They…

Cyanamide is one of the few interstellar molecules containing two chemically different N atoms. It was detected recently toward the solar-type protostar IRAS 16293-2422 B together with H$_2$N$^{13}$CN and HDNCN in the course of the Atacama…

太阳与恒星天体物理 · 物理学 2019-03-13 A. Coutens , O. Zakharenko , F. Lewen , J. K. Jørgensen , S. Schlemmer , H. S. P. Müller

Syn-glycolamide, a glycine isomer, has recently been detected in the G+0.693-0.027 molecular cloud. Investigations on its formation in the interstellar medium could offer insights into synthetic routes leading to glycine in prebiotic…

星系天体物理 · 物理学 2025-04-25 Jessica Perrero , Silvia Alessandrini , Hexu Ye , Cristina Puzzarini , Albert Rimola

We used ALMA to perform a line survey of the high-mass star forming region Sgr B2(N), called ReMoCA. We modeled under the assumption of LTE the spectra obtained toward the sources embedded in the secondary hot core Sgr B2(N2). We compared…

星系天体物理 · 物理学 2025-06-25 A. Belloche , R. T. Garrod , H. S. P. Müller , N. J. Morin , S. A. Willis , K. M. Menten

Glycolaldehyde (HCOCH2OH) is the simplest sugar and an important intermediate in the path toward forming more complex biologically relevant molecules. In this paper we present the first detection of 13 transitions of glycolaldehyde around a…

太阳与恒星天体物理 · 物理学 2015-06-11 Jes K. Jorgensen , Cecile Favre , Suzanne E. Bisschop , Tyler L. Bourke , Ewine F. van Dishoeck , Markus Schmalzl

Isomerism in complex organic molecules provides key insights into the formation mechanisms and physical conditions of the interstellar medium (ISM). Among the C$_2$H$_5$NO isomers, only acetamide and trans-N-methylformamide (trans-NMF) have…

In recent times, large organic molecules of exceptional complexity have been found in diverse regions of the interstellar medium. In this context, we aim to provide accurate frequencies of the ground vibrational state of two key aliphatic…

Amino acids are building blocks of proteins and therefore key ingredients for the origin of life. The simplest amino acid, glycine, has long been searched for in the interstellar medium but has not been unambiguously detected so far. Since…

天体物理学 · 物理学 2014-08-25 A. Belloche , K. M. Menten , C. Comito , H. S. P. Müller , P. Schilke , J. Ott , S. Thorwirth , C. Hieret

The search for complex organic molecules (COMs) in the ISM has revealed chemical species of ever greater complexity. This search relies heavily on the progress made in the laboratory to characterize the rotational spectra of these…

星系天体物理 · 物理学 2018-09-12 Arnaud Belloche

In this work, we identify carbodiimide (HNCNH), which is an isomer of the well-known interstellar species cyanamide (NH2CN), in weak maser emission, using data from the GBT PRIMOS survey toward Sgr B2(N). All spectral lines observed are in…

The amide-related molecules are essential for the formation of the other complex bio-molecules and an understanding of the prebiotic chemistry in the interstellar medium (ISM). We presented the first detection of the rotational emission…

星系天体物理 · 物理学 2023-05-10 Arijit Mannna , Sabyasachi Pal
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