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相关论文: Investigating the hot molecular core, G10.47+0.03:…

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The study of complex nitrogen (N)-bearing molecules is essential for probing the physical and chemical evolution of star-forming regions. In this paper, we present the identification of rotational emission lines from several complex…

星系天体物理 · 物理学 2026-05-27 Arijit Manna , Sabyasachi Pal , Tapas Baug , Ariful Hoque , Sandip Dutta , Sekhar Sinha , Sushanta Kumar Mondal

The studies of the complex organic molecular lines towards the hot molecular cores at millimeter and submillimeter wavelengths provide instructive knowledge about the chemical complexity in the interstellar medium (ISM). We present the…

星系天体物理 · 物理学 2023-06-01 Arijit Manna , Sabyasachi Pal

The chemical inventory of planets is determined by the physical and chemical processes that govern the early phases of star formation. The aim is to investigate N-bearing complex organic molecules towards two Class 0 protostars (B1-c and…

In the study of high-mass star formation, hot cores are empirically defined stages where chemically rich emission is detected toward a massive YSO. It is unknown whether the physical origin of this emission is a disk, inner envelope, or…

太阳与恒星天体物理 · 物理学 2017-07-26 V. Allen , F. F. S. van der Tak , Á. Sánchez-Monge , R. Cesaroni , M. T. Beltrán

We present an unbiased spectral line survey toward the Galactic Centre (GC) quiescent giant molecular cloud (QGMC), G+0.693 using the GBT and IRAM 30$\,$ telescopes. Our study highlights an extremely rich organic inventory of abundant…

After hydrogen, oxygen, and carbon, nitrogen is one of the most chemically active species in the interstellar medium (ISM). Nitrogen bearing molecules have great importance as they are actively involved in the formation of biomolecules.…

太阳与恒星天体物理 · 物理学 2021-08-30 Prasanta Gorai , Bratati Bhat , Milan Sil , Suman K. Mondal , Rana Ghosh , Sandip K. Chakrabarti , Ankan Das

Investigating the physical and chemical structures of massive star-forming regions is critical for understanding the formation and the early evolution of massive stars. We performed a detailed line survey toward six dense cores named as…

The different spatial distributions of N-bearing and O-bearing species, as is well known towards Orion~KL, is one of the long-lasting mysteries. We conducted a survey observation and chemical modeling study to investigate if the different…

太阳与恒星天体物理 · 物理学 2018-07-18 Taiki Suzuki , Masatoshi Ohishi , Masao Saito , Tomoya Hirota , Liton Majumdar , Valentine Wakelam

The physical structure of hot molecular cores, where forming massive stars have heated up dense dust and gas, but have not yet ionized the molecules, poses a prominent challenge in the research of high-mass star formation and…

星系天体物理 · 物理学 2018-07-04 Rainer Rolffs , Peter Schilke , Qizhou Zhang , Luis Zapata

As a work in progress, results from a chemical and physical analysis of molecular cores in early evolutionary stages concerning star formation are presented. Using archival data from the Atacama Large Millimeter Array (ALMA), a sample of 37…

星系天体物理 · 物理学 2026-03-06 R. D. Taboada , S. Paron , M. E. Ortega , H. Saldaño

High-mass star formation involves complex processes, with the hot core phase playing a crucial role in chemical enrichment and the formation of complex organic molecules. However, molecular inventories in hot cores remain limited. Using…

We present preliminary results of an extensive research project aimed at describing the physical and chemical conditions of hot molecular cores (HMCs). Using millimeter continuum and spectroscopic data extracted from the Atacama Large…

星系天体物理 · 物理学 2026-03-06 N. C. Martinez , S. Paron , M. E. Ortega , L. Supán , A. Petriella

We have observed several emission lines of two Nitrogen-bearing (C2H5CN and C2H3CN) and two Oxygen-bearing (CH3OCH3 and HCOOCH3) molecules towards a sample of well-known hot molecular cores (HMCs) in order to check whether the chemical…

天体物理学 · 物理学 2009-11-13 F. Fontani , I. Pascucci , P. Caselli , F. Wyrowski , R. Cesaroni , C. M. Walmsley

No statistical study of COMs toward a large sample of high-mass protostars with ALMA has been carried out so far. We aim to study six N-bearing species: CH$_3$CN, HNCO, NH$_2$CHO, C$_2$H$_5$CN, C$_2$H$_3$CN and CH$_3$NH$_2$ in a large…

Massive star-forming regions exhibit an extremely rich and diverse chemistry, which in principle provides a wealth of molecular probes, as well as laboratories for interstellar prebiotic chemistry. Since the chemical structure of these…

A partial submillimeter line-survey was performed toward 7 high-mass young stellar objects (YSOs) aimed at detecting H2CO, CH3OH, CH2CO, CH3CHO, C2H5OH, HCOOH, HNCO and NH2CHO. In addition, other organic species such as CH3CN have been…

天体物理学 · 物理学 2009-11-13 S. E. Bisschop , J. K. Jorgensen , E. F. van Dishoeck , E. B. M. de Wachter

We present the results of a line identification analysis using data from the IRAM Plateau de Bure Inferferometer, focusing on six massive star-forming hot cores: G31.41+0.31, G29.96-0.02, G19.61-0.23, G10.62-0.38, G24.78+0.08A1 and…

太阳与恒星天体物理 · 物理学 2015-06-22 Hannah Calcutt , Serena Viti , Claudio Codella , Maria T. Beltrán , Francesco Fontani , Paul M. Woods

As the number of complex organic molecules (COMs) detected in the interstellar medium increases, it becomes important to place meaningful constraints on the formation pathways of these species. The molecular cloud SgrB2(N) is host to…

星系天体物理 · 物理学 2019-07-31 M. Bonfand , A. Belloche , R. T. Garrod , K. M. Menten , E. Willis , G. Stéphan , H. S. P. Müller

(Abridged) We aim to enlarge the number of known hot corinos and carry out a first comparative study with hot cores. The ultimate goal is to understand whether complex organic molecules form in the gas phase or on grain surfaces, and what…

天体物理学 · 物理学 2015-06-24 Sandrine Bottinelli , Cecilia Ceccarelli , Jonathan P. Williams , Bertrand Lefloch

We carried out line survey observations at the 26-30 GHz band toward the four high-mass star-forming regions containing hot cores, G10.30-0.15, G12.89+0.49, G16.86-2.16, and G28.28-0.36, with the Robert C. Byrd Green Bank Telescope. We have…

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