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相关论文: Electron Abundance in Protostellar Cores

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Organic features lead to two distinct types of Class 0/I low-mass protostars: hot corino sources, and warm carbon-chain chemistry (WCCC) sources. Some observations suggest that the chemical variations between WCCC sources and hot corino…

太阳与恒星天体物理 · 物理学 2023-12-13 Jingfei Sun , Xiaohu Li , Fujun Du , Yao Wang , Juan Tuo , Yanan Feng

Understanding the complex ionization structure and chemical composition of \hii\ regions poses a significant challenge in astrophysics. The abundance discrepancy problem, characterized by inconsistencies between abundances derived from…

Cornerstone molecules (CO, H_2CO, CH_3OH, HCN, HNC, CN, CS, SO) were observed toward seven sub-millimeter bright sources in the Orion molecular cloud in order to quantify the range of conditions for which individual molecular line tracers…

天体物理学 · 物理学 2009-11-10 Doug Johnstone , Annemieke M. S. Boonman , Ewine F. van Dishoeck

This paper presents a large spectral line and continuum survey of 8 deeply embedded, low-mass protostellar cores using the Submillimeter Array. Each source was observed in high excitation lines of some of the most common molecular species,…

We present an analytical study of a large sample of ~109 young stellar objects in the X-ray. Our objects were detected in X-ray independent of age. Unexpectedly, the X-ray energy is somewhat correlated with the ages. It decreases with time…

太阳与恒星天体物理 · 物理学 2015-03-17 M. Hamidouche , M. Jacobson , L. W. Looney

Context. IRAS 16293E is a rare case of a prestellar core being subjected to the effects of at least one outflow.Aims. We want to disentangle the actual structure of the core from the outflow impact and evaluate the evolutionary stage of the…

星系天体物理 · 物理学 2024-10-30 L. Pagani , Arnaud Belloche , Bérengère Parise

(Abridged) Complex organic molecules (COMs) are commonly detected in and near star-forming regions. However, the dominant process in the release of these COMs from the icy grains - where they predominately form - to the gas phase is still…

太阳与恒星天体物理 · 物理学 2021-11-24 S. J. van der Walt , L. E. Kristensen , J. K. Jørgensen , H. Calcutt , S. Manigand , M. el Akel , R. T. Garrod , K. Qiu

During the transition phase from a prestellar to a protostellar cloud core, one or several protostars can form within a single gas core. The detailed physical processes of this transition, however, still remain unclear. We present 1.3 mm…

During massive star formation, dense gas undergoes chemical evolution, producing both simple and complex organic molecules (COMs) characteristic of hot molecular cores. How this evolution depends on protostellar physical properties remains…

星系天体物理 · 物理学 2025-10-31 D. Gigli , P. Gorai , C. Y. Law , J. C. Tan , M. Bonfand , T. Rahman , Y. Zhang , K. Taniguchi , R. Fedriani , Z. Telkamp , V. Rosero , G. Cosentino

Understanding the collapse of clouds and the formation of protoplanetary disks is essential to understanding the formation of stars and planets. Infall and accretion, the mass-aggregation processes that occur at envelope and disk scales,…

The {\it Far Ultraviolet Spectroscopic Explorer} ({\it FUSE}) has allowed precise determinations of the column densities of molecular hydrogen ($\Hmol$) in Galactic lines of sight with a wide range of pathlengths and extinction properties.…

星系天体物理 · 物理学 2010-06-28 Adam G. Jensen , Theodore P. Snow , George Sonneborn , Brian L. Rachford

Carbon monoxide (CO) is the most abundant molecule after molecular hydrogen and is important for the chemistry in circumstellar envelopes around evolved stars. When modelling the strength and shape of molecular lines, the size of the CO…

太阳与恒星天体物理 · 物理学 2021-06-02 Martin Groenewegen , Maryam Saberi

Determining the structure of and the velocity field in prestellar cores is essential to understanding protostellar evolution.} {We have observed the dense prestellar cores L 1544 and L 183 in the $N = 1 \to 0$ rotational transition of CN…

天体物理学 · 物理学 2009-11-13 Pierre Hily-Blant , Malcolm Walmsley , G. Pineau Des Forêts , David Flower

We present the abundances of 23 elements, including 11 heavy elements (Cu, Zn, Sr, Y, Zr, Ba, La, Ce, Nd, Sm, Eu) for up to 86 metal-poor (-2 < [Fe/H] < -1) subgiants. We use KORG, a state of the art spectral synthesis package, to derive…

太阳与恒星天体物理 · 物理学 2025-12-03 Emily J. Griffith , Marissa Blum , David H. Weinberg , Jennifer A. Johnson , Tawny Sit , Ilya Ilyin , Klaus G. Strassmeier

We present a detailed model for the thermal balance, chemistry, and radiative transfer within quiescent dense molecular cloud cores that contain a central protostar. Large variations in the gas temperature are expected to affect the…

天体物理学 · 物理学 2009-10-30 S. D. Doty , D. A. Neufeld

High spectral resolution spectroscopy has proved to be very useful for the advancement of chemical abundances studies in photoionized nebulae, such as H II regions and planetary nebulae (PNe). Classical analyses make use of the intensity of…

星系天体物理 · 物理学 2015-06-17 C. Esteban , J. Garcia-Rojas , A. Mesa-Delgado , L. Toribio San Cipriano

The freezeout of gas-phase species onto cold dust grains can drastically alter the chemistry and the heating-cooling balance of protostellar material. In contrast to well-known species such as carbon monoxide (CO), the freezeout of various…

Context: Chemical models of dense cloud cores often utilize the so-called pseudo-time-dependent approximation, in which the physical conditions are held fixed and uniform as the chemistry occurs. In this approximation, the initial…

太阳与恒星天体物理 · 物理学 2015-05-18 G. E. Hassel , E. Herbst , E. A. Bergin

Optical CCD spectra are used to determine the Fe abundances at several positions inside seven bright Galactic HII regions. The observed [FeIII] line ratios are compared with the predictions of different sets of collision strengths and…

天体物理学 · 物理学 2009-11-07 M. Rodriguez

In order to shed light on the main physical processes controlling fragmentation of massive dense cores, we present a uniform study of the density structure of 19 massive dense cores, selected to be at similar evolutionary stages, for which…

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