The Nearby Evolved Stars Survey II: constructing a volume-limited sample and first results from the James Clerk Maxwell Telescope
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2022Metadata
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Scicluna, P.
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The Nearby Evolved Stars Survey II: constructing a volume-limited sample and first results from the James Clerk Maxwell Telescope
Author
- Scicluna, P.;
- Kemper, F.;
- McDonald, I.;
- Srinivasan, S.;
- Trejo, A.;
- Wallstrom, S. H. J.;
- Wouterloot, J. G. A.;
- Cami, J.;
- Greaves, J.;
- He, Jinhua;
- Hoai, D. T.;
- Kim, Hyosun;
- Jones, O. C.;
- Shinnaga, H.;
- Clark, C. J. R.;
- Dharmawardena, T.;
- Holland, W.;
- Imai, H.;
- van Loon, J. Th;
- Menten, K. M.;
- Wesson, R.;
- Chawne, H.;
- Feng, S.;
- Goldman, S.;
- Liu, F. C.;
- MacIsaac, H.;
- Tang, J.;
- Zeegers, S.;
- Amada, K.;
- Antoniou, V.;
- Bemis, A.;
- Boyer, M. L.;
- Chapman, S.;
- Chen, X.;
- Cho, S-H;
- Cui, L.;
- Dell'Agli, F.;
- Friberg, P.;
- Fukaya, S.;
- Gómez, H.;
- Gong, Y.;
- Hadjara, Macinissa;
- Haswell, C.;
- Hirano, N.;
- Hony, S.;
- Izumiura, H.;
- Jeste, M.;
- Jiang, X.;
- Kaminski, T.;
- Keaveney, N.;
- Kim, J.;
- Kraemer, K. E.;
- Kuan, Y-J;
- Lagadec, E.;
- Lee, C. F.;
- Liu, S-Y;
- Liu, T.;
- de Looze, I.;
- Lykou, F.;
- Maraston, C.;
- Marshall, J. P.;
- Matsuura, M.;
- Min, C.;
- Otsuka, M.;
- Oyadomari, M.;
- Parsons, H.;
- Patel, N. A.;
- Peeters, E.;
- Pham, T. A.;
- Qiu, J.;
- Randall, S.;
- Rau, G.;
- Redman, M. P.;
- Richards, A. M. S.;
- Serjeant, S.;
- Shi, C.;
- Sloan, G. C.;
- Smith, M. W. L.;
- Suh, K-W;
- Toala, J. A.;
- Uttenthaler, S.;
- Ventura, P.;
- Wang, B.;
- Yamamura, I.;
- Yang, T.;
- Yun, Y.;
- Zhang, F.;
- Zhang, Y.;
- Zhao, G.;
- Zhu, M.;
- Zijlstra, A. A.;
Abstract
The Nearby Evolved Stars Survey (NESS) is a volume-complete sample of similar to 850 Galactic evolved stars within 3 kpc at (sub-)mm wavelengths, observed in the CO J = (2-1) and (3-2) rotational lines, and the sub-mm continuum, using the James Clark Maxwell Telescope and Atacama Pathfinder Experiment. NESS consists of five tiers, based on distances and dust-production rate (DPR). We define a new metric for estimating the distances to evolved stars and compare its results to Gaia EDR3. Replicating other studies, the most-evolved, highly enshrouded objects in the Galactic Plane dominate the dust returned by our sources, and we initially estimate a total DPR of 4.7 x 10(-5) M-circle dot yr(-1) from our sample. Our sub-mm fluxes are systematically higher and spectral indices are typically shallower than dust models typically predict. The 450/850 $\mu$m spectral indices are consistent with the blackbody Rayleigh-Jeans regime, suggesting a large fraction of evolved stars have unexpectedly large envelopes of cold dust.
Patrocinador
National Key R&D Programme of China 2017YFA0402700
UK Research & Innovation (UKRI)
Science & Technology Facilities Council (STFC)
Ministry of Science and Technology, Taiwan MOST1042628-M-001-004-MY3
MOST107-2119-M-001-031-MY3
MOST109-2112-M-001-036-MY3
Academia Sinica - Taiwan AS-IA-106-M03
UK Research & Innovation (UKRI)
Science & Technology Facilities Council (STFC) ST/L00768/1
ST/P000649/1
UK Science and Technology Facility Council ST/P000649/1
ST/L000768/1
UNAM-PAPIIT Programme IA104820
FWO 1285221N
European Research Council (ERC)
European Commission 646758 AEROSOL
EU's Horizon 2020 programme under the Marie Sklodowska-Curie grant 665593
Daiwa Anglo-Japan Foundation
Great Britain Sasakawa Foundation
European Research Council (ERC)
European Commission ERC-2014-CoG-647939
UK Research & Innovation (UKRI)
Science & Technology Facilities Council (STFC) ST/L003597/1
Natural Sciences and Engineering Research Council of Canada (NSERC)
National Natural Science Foundation of China (NSFC) 11873086
U1631237
Yunnan Province of China 2017HC018
National Aeronautics & Space Administration (NASA) 80GSFC17M0002
National Research Foundation of Korea 2021R1A2C1008928
Chinese Academy of Sciences
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Artículo de publícación WoS
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MNRAS 000, 1–20 (2019)
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