中文
相关论文

相关论文: The TW Hya Rosetta Stone Project II: Spatially res…

200 篇论文

The spatial distribution of the chemical reservoirs in protoplanetary disks is key to elucidate the composition of planets, especially habitable ones. However, the partitioning of the main elements among the refractory and volatile phases…

地球与行星天体物理 · 物理学 2026-03-16 M. Gaillard , A. Faure , P. Hily-Blant , R. Le Gal , S. Lee , H. Nomura , K. Furuya

Planets form in protoplanetary disks and inherit their chemical compositions. It is thus crucial to map the distribution and investigate the formation of simple organics, such as formaldehyde and methanol, in protoplanetary disks. We…

太阳与恒星天体物理 · 物理学 2019-03-13 L. Podio , F. Bacciotti , D. Fedele , C. Favre , C. Codella , K. L. J. Rygl , I. Kamp , G. Guidi , E. Bianchi , C. Ceccarelli , D. Coffey , A. Garufi , L. Testi

H$_2$CO is a small organic molecule widely detected in protoplanetary disks. As a precursor to grain-surface formation of CH$_3$OH, H$_2$CO is considered an important precursor of O-bearing organic molecules that are locked in ices. Still,…

Ortho-to-para (o/p) ratios of species like water, ammonia and formaldehyde (H2CO) are believed to encode information about the formation history of the molecule. Measurements of o/p ratios in protoplanetary disks could thus be used to…

星系天体物理 · 物理学 2018-09-19 V. V. Guzman , K. I. Oberg , J. Carpenter , R. Le Gal , C. Qi , J. Pagues

The presence of asymmetries and substructures in protoplanetary disks, revealed by both dust and gas emission, highlights the potential interplay and the broader connection between chemistry and dynamics in disk evolution. We explore…

The thermal structure of protoplanetary disks is a fundamental characteristic of the system that has wide reaching effects on disk evolution and planet formation. In this study, we constrain the 2D thermal structure of the protoplanetary…

H$_2$CO is one of the most abundant organic molecules in protoplanetary disks and can serve as a precursor to more complex organic chemistry. We present an ALMA survey of H$_2$CO towards 15 disks covering a range of stellar spectral types,…

The formation of stars and planetary systems is a complex phenomenon, which relies on the interplay of multiple physical processes. Nonetheless, it represents a crucial stage for our understanding of the Universe, and in particular of the…

星系天体物理 · 物理学 2022-01-05 Alessandro Lupi , Stefano Bovino , Tommaso Grassi

Based on recent $Herschel$ results, the ortho-to-para ratio (OPR) of NH$_2$ has been measured towards the following high-mass star-forming regions: W31C (G10.6-0.4), W49N (G43.2-0.1), W51 (G49.5-0.4), and G34.3+0.1. The OPR at thermal…

星系天体物理 · 物理学 2016-11-30 Romane Le Gal , Eric Herbst , Changjian Xie , Anyang Li , Hua Guo

The ortho-to-para ratio (OPR) of H$_2$O is thought to be sensitive to the temperature of water formation. The OPR of H$_2$O is thus useful to study the formation mechanism of water. We investigate the OPR of water in the Orion PDR…

星系天体物理 · 物理学 2015-06-22 Y. Choi , F. F. S. van der Tak , E. A. Bergin , R. Plume

H2CO is one of the most readily detected organic molecules in protoplanetary disks. Yet its distribution and dominant formation pathway(s) remain largely unconstrained. To address these issues, we present ALMA observations of two H2CO lines…

Multi-hydrogenated species with proper symmetry properties can present different spin configurations, and thus exist under different spin symmetry forms, labeled as para and ortho for two-hydrogen molecules. We investigated here the…

星系天体物理 · 物理学 2017-12-13 Romane Le Gal , Changjian Xie , Eric Herbst , Dahbia Talbi , Hua Guo , Sebastien Muller

[Abridged] Observations of protoplanetary disks suggest that they are depleted in gas-phase CO. It has been posed that gas-phase CO is chemically consumed and converted into less volatile species through gas-grain processes. Observations of…

天体物理仪器与方法 · 物理学 2022-10-05 J. Terwisscha van Scheltinga , N. F. W. Ligterink , A. D. Bosman , M. R. Hogerheijde , H. Linnartz

[abridged] The enhanced degrees of deuterium fractionation observed in envelopes around protostars demonstrate the importance of chemistry at low temperatures, relevant in pre- and protostellar cores. formaldehyde is an important species in…

Three formaldehyde lines were observed (H$_2$CO 3$_{03}$--2$_{02}$, H$_2$CO 3$_{22}$--2$_{21}$, and H$_2$CO 3$_{21}$--2$_{20}$) in the protoplanetary disk around the Herbig Ae star HD 163296 with ALMA at 0.5 arcsecond (60 AU) spatial…

太阳与恒星天体物理 · 物理学 2017-09-06 M. T. Carney , M. R. Hogerheijde , R. A. Loomis , V. N. Salinas , K. I. Öberg , C. Qi , D. J. Wilner

Connecting the composition of planet-forming disks with that of gas giant exoplanet atmospheres, in particular through C/O ratios, is one of the key goals of disk chemistry. Small hydrocarbons like $\rm C_2H$ and $\rm C_3H_2$ have been…

Formamide (NH2CHO) is considered an important prebiotic molecule because of its potential to form peptide bonds. It was recently detected in the atmosphere of the HH 212 protostellar disk on the Solar-System scale where planets will form.…

星系天体物理 · 物理学 2022-09-28 Chin-Fei Lee , Claudio Codella , Cecilia Ceccarelli , Ana Lopez-Sepulcre

Complex organic molecules (COMs) are detected in many regions of the interstellar medium, including prestellar cores. However, their formation mechanisms in cold (~10 K) cores remain to this date poorly understood. The formyl radical HCO is…

星系天体物理 · 物理学 2016-03-23 A. Bacmann , E. García-García , A. Faure

We have used the Herschel-HIFI instrument to observe both nuclear spin symmetries of amidogen (NH2) towards the high-mass star-forming regions W31C (G10.6-0.4), W49N (G43.2-0.1), W51 (G49.5-0.4) and G34.3+0.1. The aim is to investigate the…

Formaldehyde is a key precursor in the formation routes of many complex organic molecules (COMs) in space. It is also an intermediate step in CO hydrogenation sequence that leads to methanol formation on the surface of interstellar grains…

星系天体物理 · 物理学 2025-02-04 A. F. Punanova , K. Borshcheva , G. S. Fedoseev , P. Caselli , D. S. Wiebe , A. I. Vasyunin
‹ 上一页 1 2 3 10 下一页 ›