A systematic survey of millimetre-wavelength flaring variability of young stellar objects in the Orion Nebula Cluster

Author:

Vargas-González J12ORCID,Forbrich J13ORCID,Rivilla V M4ORCID,Menten K M5ORCID,Güdel M6,Hacar A6ORCID

Affiliation:

1. Centre for Astrophysics Research, School of Physics, Astronomy and Mathematics, University of Hertfordshire , Hatfield AL10 9AB, UK

2. ESO, Alonso de Córdova 3107 Vitacura , Casilla, 19001, Santiago, Chile

3. Harvard-Smithsonian Center for Astrophysics , 60 Garden St, Cambridge MA 02138, USA

4. Centro de Astrobiología (CSIC-INTA) , Ctra. de Ajalvir Km. 4, Torrejón de Ardoz, 28850 Madrid, Spain

5. Max Planck Institut für Radioastronomie , Auf dem Hügel 69, D-53121 Bonn, Germany

6. Department of Astrophysics, University of Vienna , Türkenschanzstrasse 17, A-1180 Vienna, Austria

Abstract

ABSTRACT High-energy processes are ubiquitous even in the earliest stages of protostellar evolution. Motivated by the results of our systematic search for intense centimetre radio flares in Young Stellar Objects (YSOs) and by rare findings of strong millimetre-wavelength variability, we have conducted a systematic search for such variability in the Orion Nebula Cluster (ONC) using Atacama Large Millimetre/submillimetre Array (ALMA). Rapid variability on time-scales of minutes to hours in the (centimetre) millimetre-wavelength range indicates (gyro)synchrotron radiation. Additionally, mass accretion will also affect the millimetre-wavelength luminosity but typically on longer time-scales. Beyond studies of individual YSOs, our characterization of strong millimetre-wavelength variability with ALMA in the ONC sets first systematic constraints on the occurrence of such variability in a large number of YSOs (∼130). We report the discovery of an order of magnitude millimetre-flare within just a few minutes from a known YSO previously reported as a radio flaring source at cm-wavelengths (the ‘ORBS’ source). We also present an assessment of the systematic variability effects caused by the use of time-sliced imaging of a complex region. These are mostly due to the impact of a changing synthesized beam throughout the observations. We use simulated ALMA observations to reproduce and quantify these effects, and set a lower limit for the variability that can be studied using our method in a complex region such as the ONC. Our results demonstrate that the utility of time domain analysis of YSOs extends into the millimetre-wavelength range, potentially interfering with the conversion of observed fluxes into dust masses.

Funder

Comunidad de Madrid

Ministerio de Ciencia e Innovación

AEI

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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