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相关论文: Tracers of Dense Gas in the Outer Galaxy

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We present maps and spectra of the HCN(1-0) and HCO$^+$(1-0) lines in the extreme outer Galaxy, at galactocentric radii between 14 and 22 kpc, with the 13.7 meter Delingha telescope. The 9 molecular clouds were selected from a CO/$^{13}$CO…

We report results of a project to map HCN and HCO+ J = 1-0 emission toward a sample of molecular clouds in the inner Galaxy, all containing dense clumps that are actively engaged in star formation. We compare these two molecular line…

星系天体物理 · 物理学 2020-05-20 Neal J. Evans , Kee-Tae Kim , Jingwen Wu , Zhang Chao , Mark Heyer , Tie Liu , Quang Nguyen-Luong , Jens Kauffmann

We aim to better understand the emission of molecular tracers of the diffuse and dense gas in giant molecular clouds and the influence that metallicity, optical extinction, density, far-UV field, and star formation rate have on these…

A sample of 30 H2O extra-galactic maser galaxies with their published HCN(J=1-0) and HCO+(J=1-0) observations has been compiled to investigate the dense gas correlation with H2O maser emission. Our sample number exceeds the size of the…

星系天体物理 · 物理学 2020-10-14 A. Farhan , E. N. Ercan , F. Tombesi

HCN and HCO$^+$ are the most common dense gas tracers used both in the Milky Way and external galaxies. The luminosity of HCN and HCO$^+$ $J = 1-0$ lines are converted to a dense gas mass by the conversion factor, $\alpha_{Q}$.…

New HCN, HNC, and HCO+ measurements of 46 normal galaxies in transitions up to J=4-3 are included in a multitransition database covering HCN and HCO+ (130 galaxies) and HNC (94 galaxies). The near-linear luminosity relations are dominated…

星系天体物理 · 物理学 2023-03-08 F. P. Israel

The HCN, HCO+, and HNC molecules are commonly used as tracers of dense star-forming gas in external galaxies, but such observations are spatially unresolved. Reliably inferring the properties of galactic nuclei and disks requires detailed…

星系天体物理 · 物理学 2015-05-20 Helen Roberts , Floris van der Tak , Gary Fuller , René Plume , Estelle Bayet

We investigate the relationship between CN N = 1 - 0 and HCN J = 1 - 0 emission on scales from 30 pc to 400 pc using ALMA archival data, for which CN is often observed simultaneously with the CO J = 1 - 0 line. In a sample of 9 nearby…

星系天体物理 · 物理学 2023-03-15 Christine D. Wilson , Ashley Bemis , Blake Ledger , Osvald Klimi

Stars form out of the densest parts of molecular clouds. Far-IR emission can be used to estimate the Star Formation Rate (SFR) and high dipole moment molecules, typically HCN, trace the dense gas. A strong correlation exists between HCN and…

星系天体物理 · 物理学 2016-12-28 J. Braine , Y. Shimajiri , P. André , S. Bontemps , Yu Gao , Hao Chen , C. Kramer

Trends observed in galaxies, such as the Gao \& Solomon relation, suggest a linear relation between the star formation rate and the mass of dense gas available for star formation. Validation of such relations requires the establishment of…

星系天体物理 · 物理学 2017-09-20 Jens Kauffmann , Paul F. Goldsmith , Gary Melnick , Volker Tolls , Andres Guzman , Karl M. Menten

We present 3 mm and 2 mm band simultaneously spectroscopic observations of HCN 1-0, HCO$^{+}$ 1-0, HNC 1-0, and CS 3-2 with the IRAM 30 meter telescope, toward a sample of 70 sources as nearby galaxies with infrared luminosities ranging…

星系天体物理 · 物理学 2021-03-24 Fei Li , Junzhi Wang , Feng Gao , Shu Liu , Zhi-Yu Zhang , Shanghuo Li , Yan Gong , Juan Li , Yong Shi

HCN J$\, =\,$1$\, -\,$0 emission is commonly used as a dense gas tracer, thought to mainly arise from gas with densities $\mathrm{\sim 10^4\ -\ 10^5\ cm^{-3}}$. This has made it a popular tracer in star formation studies. However, there is…

星系天体物理 · 物理学 2023-05-03 Gerwyn H. Jones , Paul C. Clark , Simon C. O. Glover , Alvaro Hacar

High critical density molecular lines like HCN(1-0) or HCO+(1-0) represent our best tool to study currently star-forming, dense molecular gas at extragalactic distances. The optical depth of these lines is a key ingredient to estimate the…

Giant Molecular Filaments are opportune locations in our Galaxy to study the star-forming interstellar matter and its accumulation on spatial scales comparable to those now becoming available for external galaxies. We mapped the emission of…

星系天体物理 · 物理学 2025-06-12 O. Feher , S. E. Ragan , F. D. Priestley , P. C. Clark

We present the 3 mm wavelength spectra of 28 local galaxy merger remnants obtained with the Large Millimeter Telescope. Fifteen molecular lines from 13 different molecular species and isotopologues were identified, and 21 out of 28 sources…

There is a linear relation between the mass of dense gas, traced by the HCN(1-0) luminosity, and the star formation rate (SFR), traced by the far-infrared luminosity. Recent observations of galactic disks have shown some systematic…

星系天体物理 · 物理学 2017-02-22 Hao Chen , Jonathan Braine , Yu Gao , Jin Koda , Qiusheng Gu

High-density molecular gas plays a vital role in supporting star formation within galaxies. However, traditional tracers of dense gas, such as the low-$J$ transitions of HCN and HCO$^+$, are predominantly optically thick. This…

星系天体物理 · 物理学 2025-09-16 Fei Li , Zhi-Yu Zhang , Junzhi Wang , Gan Luo

Both Galactic and extragalactic studies on star formation suggest that stars form directly from dense molecular gas. To trace such high volume density gas, HCN and HCO+ J=1-0 have been widely used for their high dipole moments, relatively…

星系天体物理 · 物理学 2022-09-07 Jing Zhou , Zhi-Yu Zhang , Yu Gao , Junzhi Wang , Yong Shi , Qiusheng Gu , Chentao Yang , Tao Wang , Qinghua Tan

We report observations of dense molecular gas in the star-forming galaxy EGS 13004291 (z=1.197) using the Plateau de Bure Interferometer. We tentatively detect HCN and HNC (J=2-1) emission when stacked together at ~4sigma significance,…

Dense gas is important for galaxy evolution and star formation. Optically-thin dense-gas tracers, such as isotopologues of HCN, HCO+, etc., are very helpful to diagnose excitation conditions of dense molecular gas. However, previous studies…

星系天体物理 · 物理学 2022-08-03 Fei Li , Zhi-Yu Zhang , Junzhi Wang , Feng Gao , Shanghuo Li , Jing Zhou , Yichen Sun , Ziyi Guo , Shu Liu
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