Observational chemical signatures of the past FU Ori outbursts

Author:

Zwicky Lis1ORCID,Molyarova Tamara23,Akimkin Vitaly2,Smirnov-Pinchukov Grigorii V4ORCID,Semenov Dmitry45,Kóspál Ágnes4678ORCID,Ábrahám Péter678

Affiliation:

1. Institute of Natural Sciences and Mathematics, Ural Federal University , 19 Mira Str., 620075 Ekaterinburg , Russia

2. Institute of Astronomy, Russian Academy of Sciences , 48 Pyatnitskaya St., 119017 Moscow , Russia

3. Research Institute of Physics, Southern Federal University , 344090 Rostov-on-Don , Russia

4. Max Planck Institute for Astronomy , Königstuhl 17, D-69117 Heidelberg , Germany

5. Department of Chemistry, Ludwig Maximilian University , Butenandtstr. 5-13, D-81377 Munich , Germany

6. Konkoly Observatory, HUN-REN Research Centre for Astronomy and Earth Sciences , Konkoly-Thege Miklós út 15-17, 1121 Budapest , Hungary

7. CSFK, MTA Centre of Excellence , Konkoly-Thege Miklós út 15-17, 1121 Budapest , Hungary

8. ELTE Eötvös Loránd University, Institute of Physics , Pázmány Péter sétány 1/A, 1117 Budapest , Hungary

Abstract

ABSTRACT FU Ori-type stars (FUors) are young stellar objects (YSOs) experiencing luminosity outbursts by a few orders of magnitude, which last for ∼102 yr. A dozen of FUors are known up to date, but many more currently quiescent YSOs could have experienced such outbursts in the last ∼103 yr. To find observational signatures of possible past outbursts, we utilize andes, radmc-3d code as well as casa ALMA simulator to model the impact of the outburst on the physical and chemical structure of typical FU Ori systems and how it translates to the molecular lines’ fluxes. We identify several combinations of molecular lines that may trace past FU Ori objects both with and without envelopes. The most promising outburst tracers from an observational perspective are the molecular flux combinations of the N2H+J = 3–2, C18O J = 2–1, H2CO $(J_{\rm K_a, K_c}) = 4_{04}-3_{03}$, and HCN J = 3–2 lines. We analyse the processes leading to molecular flux changes and show that they are linked with either thermal desorption or enhanced chemical reactions in the molecular layer. Using observed CO, HCN, N2H+, and H2CO line fluxes from the literature, we identify ten nearby disc systems that might have undergone FU Ori outbursts in the past ∼103 yr: [MGM2012] 556, [MGM2012] 371, and [MGM2012] 907 YSOs in L1641, Class II protoplanetary discs around CI Tau, AS 209, and IM Lup and transitional discs DM Tau, GM Aur, LkCa 15, and J1640-2130.

Funder

Ministry of Science and Higher Education of the Russian Federation

European Research Council

European Union

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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