Muestra métricas de impacto externas asociadas a la publicación. Para mayor detalle:
| Indexado |
|
||||
| DOI | 10.3847/1538-4357/AAC512 | ||||
| Año | 2018 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
We present HCN J = 4 -> 3 and HCO+ J = 4 -> 3 maps of six nearby star-forming galaxies, NGC 253, NGC 1068, IC 342, M82, M83, and NGC 6946, obtained with the James Clerk Maxwell Telescope as part of the MALATANG survey. All galaxies were mapped in the central 2' x 2' region at 14 '' (FWHM) resolution (corresponding to linear scales of similar to 0.2-1.0 kpc). The L-IR-L'(dense) relation, where the dense gas is traced by the HCN J = 4 -> 3 and the HCO+ J = 4 -> 3 emission, measured in our sample of spatially resolved galaxies is found to follow the linear correlation established globally in galaxies within the scatter. We find that the luminosity ratio, L-IR/L'(dense), shows systematic variations with L-IR within individual spatially resolved galaxies, whereas the galaxy-integrated ratios vary little. A rising trend is also found between L-IR/L'(dense) ratio and the warm-dust temperature gauged by the 70 mu m/100 mu m flux ratio. We find that the luminosity ratios of IR/HCN (4-3) and IR/HCO+ (4-3), which can be taken as a proxy for the star formation efficiency (SFE) in the dense molecular gas (SFEdense), appear to be nearly independent of the dense gas fraction (f(dense)) for our sample of galaxies. The SFE of the total molecular gas (SFEmol) is found to increase substantially with f(dense) when combining our data with those on local (ultra) luminous infrared galaxies and high-z quasars. The mean L'(HCN(4-3))/L'(HCO+(4-3)) line ratio measured for the six targeted galaxies is 0.9 +/- 0.6. No significant correlation is found for the L'(HCN(4-3)) L'(HCO+(4-3)) ratio with the star formation rate as traced by L-IR, nor with the warm-dust temperature, for the different populations of galaxies.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Tan, Qing-Hua | - |
CASSACA - China
Purple Mountain Observatory Chinese Academy of Sciences - China |
| 2 | Gao, Y. | - |
CASSACA - China
Purple Mountain Observatory Chinese Academy of Sciences - China |
| 3 | Zhang, Zhi-Yu | - |
UNIV EDINBURGH - Reino Unido
ESO - Alemania University of Edinburgh, Institute for Astronomy - Reino Unido |
| 4 | Greve, Thomas | Hombre |
UCL - Reino Unido
University College London - Reino Unido |
| 5 | Jiang, Xuejian | - |
CASSACA - China
Purple Mountain Observatory Chinese Academy of Sciences - China |
| 6 | Wilson, Christine D. | Mujer |
MCMASTER UNIV - Canadá
McMaster University, Faculty of Science - Canadá McMaster University - Canadá |
| 7 | Yang, Chentao | - |
CASSACA - China
Univ Paris Saclay - Francia ESO - Chile Purple Mountain Observatory Chinese Academy of Sciences - China Institut d'Astrophysique Spatiale - Francia European Southern Observatory Santiago - Chile ESO - Alemania |
| 8 | Bemis, Ashley | Mujer |
MCMASTER UNIV - Canadá
McMaster University, Faculty of Science - Canadá McMaster University - Canadá |
| 9 | Chung, Aeree | - |
Yonsei Univ - Corea del Sur
Yonsei University - Corea del Sur |
| 10 | Matsushita, Satoki | - |
Acad Sinica - Taiwán
|
| 11 | Shi, Yong | Hombre |
Nanjing Univ - China
Nanjing University - China |
| 12 | Ao, Yi-Ping | - |
CASSACA - China
Natl Astron Observ Japan - Japón Purple Mountain Observatory Chinese Academy of Sciences - China National Institutes of Natural Sciences - National Astronomical Observatory of Japan - Japón National Astronomical Observatories Chinese Academy of Sciences - China Yunnan Observatories - China |
| 13 | Brinks, Elias | Hombre |
Univ Hertfordshire - Reino Unido
University of Hertfordshire - Reino Unido |
| 14 | Currie, Malcolm J. | Hombre |
Rutherford Appleton Lab - Reino Unido
Rutherford Appleton Laboratory - Reino Unido RAL Space - Reino Unido |
| 15 | Davis, Timothy A. | Hombre |
Cardiff Univ - Reino Unido
Cardiff University - Reino Unido |
| 16 | de Grijs, Richard | Hombre |
Peking Univ - China
Macquarie Univ - Australia Int Space Sci Inst Beijing - China Peking University - China Macquarie University - Australia International Space Science Institute-Beijing - China |
| 17 | Ho, Luis C. | - |
Peking Univ - China
|
| 18 | Imanishi, M. | Hombre |
Natl Astron Observ Japan - Japón
National Institutes of Natural Sciences - National Astronomical Observatory of Japan - Japón |
| 19 | Kohno, Kotaro | Hombre |
Univ Tokyo - Japón
University of Tokyo - Japón Research Center for the Early Universe - Japón The University of Tokyo - Japón |
| 20 | Lee, Bumhyun | - |
Yonsei Univ - Corea del Sur
Yonsei University - Corea del Sur |
| 21 | Parsons, Harriet | Mujer |
East Asian Observ - Estados Unidos
East Asian Observatory - Estados Unidos |
| 22 | Rawlings, Mark G. | Hombre |
East Asian Observ - Estados Unidos
East Asian Observatory - Estados Unidos |
| 23 | Rigopoulou, Dimitra | Mujer |
UNIV OXFORD - Reino Unido
University of Oxford - Reino Unido |
| 24 | Rosolowsky, E. | Hombre |
Univ Alberta - Canadá
University of Alberta - Canadá |
| 25 | Bulger, Joanna | Mujer |
NAOJ - Estados Unidos
Univ Hawaii - Estados Unidos National Institutes of Natural Sciences - National Astronomical Observatory of Japan - Japón University of Hawaii System - Estados Unidos University Hawaii Institute for Astronomy - Estados Unidos |
| 26 | Chen, Hao | - |
Nanjing Univ - China
Nanjing University - China |
| 27 | Chapman, S. | Hombre |
Dalhousie Univ - Canadá
Dalhousie University - Canadá |
| 28 | Eden, David J. | Hombre |
Liverpool John Moores Univ - Reino Unido
Liverpool John Moores University - Reino Unido |
| 29 | Gear, Walter K. | Hombre |
Cardiff Univ - Reino Unido
Cardiff University - Reino Unido |
| 30 | Gu, Qiu-Sheng | - |
Nanjing Univ - China
Nanjing University - China |
| 31 | He, Jin-Hua | Mujer |
CASSACA - China
CASSACA - Chile Universidad de Chile - Chile National Astronomical Observatories Chinese Academy of Sciences - China Chinese Academy of Sciences South America Center for Astronomy - Chile Yunnan Observatories - China |
| 32 | Jiao, Qian | - |
CASSACA - China
Purple Mountain Observatory Chinese Academy of Sciences - China |
| 33 | Liu, Dai-Zhong | - |
CASSACA - China
Max Planck Inst Astron - Alemania |
| 33 | Liu, Dai Zhong | - |
Purple Mountain Observatory Chinese Academy of Sciences - China
Max Planck Institute for Astronomy - Alemania CASSACA - China Max Planck Inst Astron - Alemania |
| 34 | Liu, Lijie | - |
CASSACA - China
UNIV OXFORD - Reino Unido Purple Mountain Observatory Chinese Academy of Sciences - China University of Oxford - Reino Unido |
| 35 | Li, Xiao-Hu | - |
CASSACA - China
National Astronomical Observatories Chinese Academy of Sciences - China |
| 36 | Michalowski, Michal J. | Hombre |
Adam Mickiewicz Univ - Polonia
Uniwersytet im. Adama Mickiewicza w Poznaniu - Polonia |
| 37 | Nguyen-Luong, | - |
Natl Astron Observ Japan - Japón
Korea Astron & Space Sci Inst - Corea del Sur UNIV TORONTO - Canadá |
| 37 | Nguyen-Lu'o'ng, Q. | Hombre |
National Institutes of Natural Sciences - National Astronomical Observatory of Japan - Japón
Korea Astronomy and Space Science Institute - Corea del Sur Canadian Institute for Theoretical Astrophysics - Canadá Natl Astron Observ Japan - Japón University of Tokyo - Canadá L’Institut Canadien d’Astrophysique Théorique - Canadá |
| 38 | Qiu, Jian-Jie | - |
Nanjing Univ - China
Nanjing University - China |
| 39 | Smith, Matthew | Hombre |
Cardiff Univ - Reino Unido
Cardiff University - Reino Unido |
| 40 | Violino, Giulio | - |
Univ Hertfordshire - Reino Unido
|
| 41 | Wang, Jun-feng | Hombre |
CASSACA - China
Xiamen Univ - China Purple Mountain Observatory Chinese Academy of Sciences - China Xiamen University - China Shanghai Astronomical Observatory Chinese Academy of Sciences - China |
| 42 | Wang, Jun-feng | Hombre |
CASSACA - China
Xiamen Univ - China Purple Mountain Observatory Chinese Academy of Sciences - China Xiamen University - China Shanghai Astronomical Observatory Chinese Academy of Sciences - China |
| 43 | Wang, Jun-feng | Hombre |
CASSACA - China
Xiamen Univ - China Purple Mountain Observatory Chinese Academy of Sciences - China Xiamen University - China Shanghai Astronomical Observatory Chinese Academy of Sciences - China |
| 44 | Yeh, Sherry C. C. | Mujer |
NAOJ - Estados Unidos
WM Keck Observ - Estados Unidos National Institutes of Natural Sciences - National Astronomical Observatory of Japan - Japón W. M. Keck Observatory - Estados Unidos |
| 45 | Ao, Yi-Ping | - |
CASSACA - China
Natl Astron Observ Japan - Japón Purple Mountain Observatory Chinese Academy of Sciences - China National Institutes of Natural Sciences - National Astronomical Observatory of Japan - Japón National Astronomical Observatories Chinese Academy of Sciences - China Yunnan Observatories - China |
| 46 | Zhu, Ming | - |
CASSACA - China
|
| Fuente |
|---|
| National Natural Science Foundation of China |
| National Key R&D Program of China |
| National Research Foundation of Korea |
| Chinese Academy of Sciences |
| CAS |
| NSFC |
| Ministerio de Ciencia y Tecnología |
| European Research Council |
| Natural Sciences and Engineering Research Council of Canada |
| ERC |
| UK Science and Technology Facilities Council |
| STFC |
| Science and Technology Facilities Council |
| Narodowe Centrum Nauki |
| Seventh Framework Programme |
| European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie Grant |
| Ministry of Science and Technology (MOST) of Taiwan |
| Science and Technology Facilities Council of the United Kingdom |
| Korea Astronomy and Space Science Institute |
| Yunnan Province of China |
| Ministry of Finance |
| Horizon 2020 Framework Programme |
| Chinese Academy of Sciences Key Research Program of Frontier Sciences |
| European Union’s Horizon 2020 research and innovation program |
| Ministerio de Ciencia y TecnologÃa |
| Center for Galaxy Evolution Research |
| JCMT Large Program |
| National Science Centre, Poland, through the POLONEZ |
| Research Institute for Astronomy and Astrophysics of Maragha |
| Operation, Maintenance and Upgrading Fund for Astronomical Telescopes and Facility Instruments |
| COSMICISM |
| Chinese Academy of Sciences Key Technology Talent Program |
| Institute of Biomedical Sciences, Academia Sinica |
| Key Research Program of Frontier Science, Chinese Academy of Sciences |
| Agradecimiento |
|---|
| This work was supported by National Key R&D Program of China grant no. 2017YFA0402704, NSFC grant nos. 11420101002 and 11603075, and Chinese Academy of Sciences Key Research Program of Frontier Sciences grant no. QYZDJ-SSW-SLH008. This work has also been supported by National Research Foundation of Korea grant no. 2015R1D1A1A01060516 and the Center for Galaxy Evolution Research (no. 2010-0027910). C.D.W. acknowledges support from the Natural Sciences and Engineering Research Council of Canada. Z.-Y.Z. acknowledges support from ERC in the form of the Advanced Investigator Programme, 321302, COSMICISM. L.H. acknowledges the support of National Key R&D Program of China grant no. 2016YFA0400702 and NSFC grant no. 11721303. E.B. acknowledges support from the UK Science and Technology Facilities Council [grant no. ST/M001008/1]. M.J.M. acknowledges the support of the National Science Centre, Poland, through the POLONEZ grant 2015/19/P/ST9/04010. This project has received funding from the European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie grant agreement no. 665778. S.M. acknowledges the support of the Ministry of Science and Technology (MoST) of Taiwan, MoST 103-2112-M-001-032-MY3 and MoST 106-2112-M-001-011. M.J.C. had support from STFC. J.-H.H. thanks the support from the National Natural Science Foundation of China (U1631237), Yunnan Province of China (no. 2017HC018) and the CAS, through a grant to the CAS South America Center for Astronomy (CASSACA) in Santiago, Chile. |
| This work was supported by National Key R&D Program of China grant no. 2017YFA0402704, NSFC grant nos. 11420101002 and 11603075, and Chinese Academy of Sciences Key Research Program of Frontier Sciences grant no. QYZDJ-SSW-SLH008. This work has also been supported by National Research Foundation of Korea grant no. 2015R1D1A1A01060516 and the Center for Galaxy Evolution Research (no. 2010-0027910). C.D.W. acknowledges support from the Natural Sciences and Engineering Research Council of Canada. Z.-Y.Z. acknowledges support from ERC in the form of the Advanced Investigator Programme, 321302, COSMICISM. L.H. acknowledges the support of National Key R&D Program of China grant no. 2016YFA0400702 and NSFC grant no. 11721303. E.B. acknowledges support from the UK Science and Technology Facilities Council [grant no. ST/M001008/1]. M.J.M. acknowledges the support of the National Science Centre, Poland, through the POLONEZ grant 2015/19/P/ST9/04010. This project has received funding from the European Union’s Horizon 2020 research and innovation program under the Marie Skłodowska-Curie grant agreement no. 665778. S.M. acknowledges the support of the Ministry of Science and Technology (MoST) of Taiwan, MoST 103-2112-M-001-032-MY3 and MoST 106-2112-M-001-011. M.J.C. had support from STFC. J.-H.H. thanks the support from the National Natural Science Foundation of China (U1631237), Yunnan Province of China (no. 2017HC018) where the sum is over all grid cells and Nobsi and Nmodeli are the number of observed and model data points, respectively, in grid cell i. |