Radio emission and mass loss rate limits of four young solar-type stars
arXiv:1702.08393 · doi:10.1051/0004-6361/201629886
Abstract
Observations of free-free continuum radio emission of four young main-sequence solar-type stars (EK Dra, Pi1 UMa, Chi1 Ori; and Kappa1 Cet) are studied to detect stellar winds or at least to place upper limits on their thermal radio emission, which is dominated by the ionized wind. These stars are excellent proxies for representing the young Sun. Upper limits on mass loss rates are calculated using their observational radio emission. Our aim is to re-examine the faint young Sun paradox by assuming that the young Sun was more massive in its past, and hence to find a possible solution for this famous problem. The observations of our sample are performed with the Karl G. Jansky VLA with excellent sensitivity, using the C-band and the Ku-band. ALMA observations are performed at 100 GHz. For the estimation of the mass loss limits, spherically symmetric winds and stationary, anisotropic, ionized winds are assumed. We compare our results to 1) mass loss rate estimates of theoretical rotational evolution models, and 2) to results of the indirect technique of determining mass loss rates: Lyman-alpha absorption. We are able to derive the most stringent direct upper limits on mass loss so far from radio observations. Two objects, EK Dra and Chi1 Ori, are detected at 6 and 14 GHz down to an excellent noise level. These stars are very active and additional radio emission identified as non-thermal emission was detected, but limits for the mass loss rates of these objects are still derived. The stars Pi1 UMa and Kappa1 Cet were not detected in either C-band or in Ku-band. For these objects we give upper limits to their radio free-free emission and calculate upper limits to their mass loss rates. Finally, we reproduce the evolution of the Sun and derive an estimate for the solar mass of the Sun at a younger age.
References in corpus (6)
- Stellar magnetism: empirical trends with age and rotation
- The faint young Sun problem
- Stellar Winds on the Main-Sequence II: the Evolution of Rotation and Winds
- Improved angular momentum evolution model for solar-like stars II. Exploring the mass dependence
- Stellar Winds on the Main-Sequence I: Wind Model
- First Detection of Thermal Radio Emission from Solar-Type Stars with the Karl G. Jansky Very Large Array
Cited by in corpus (31)
- New Observational Constraints on the Winds of M Dwarf Stars
- The evolution of the solar wind
- Solar structure and evolution
- The quest for stellar coronal mass ejections in late-type stars: I. Investigating Balmer-line asymmetries of single stars in Virtual Observatory data
- Hidden magnetic fields of young suns
- Stellar Coronal Mass Ejections I. Estimating occurrence frequencies and mass-loss rates
- Is the faint young Sun problem for Earth solved?
- Exoplanets as probes of the winds of host stars: the case of the M dwarf GJ 436
- Effects of the stellar wind on the Ly-alpha transit of close-in planets
- A census of Coronal Mass Ejections on solar-like stars
- The young Sun's XUV-activity as a constraint for lower CO-limits in the Earth's Archean atmosphere
- MOVES II. Tuning in to the radio environment of HD189733b
- Airy worlds or barren rocks? On the survivability of secondary atmospheres around the TRAPPIST-1 planets
- The GAPS Programme at TNG. XXXII. The revealing non-detection of metastable HeI in the atmosphere of the hot Jupiter WASP-80b
- The solar wind from a stellar perspective: how do low-resolution data impact the determination of wind properties?
- One Year in the Life of Young Suns: Data Constrained Corona-Wind Model of kappa1 Ceti
- Planet(esimal)s Around Stars with TESS (PAST) III: A Search for Triplet He I in the Atmospheres of Two 200 Myr-old Planets
- Lambda And: A post-main sequence wind from a solar-mass star
- The Earth-like Galactic cosmic ray intensity in the habitable zone of the M dwarf GJ 436
- Global trends in winds of M dwarf stars
- Numerical quantification of the wind properties of cool main sequence stars
- X-ray detection of astrospheres around three main-sequence stars and their mass-loss rates
- Detection of 24 GHz Continuum Emission from Eridani
- Transition of latitudinal differential rotation as a possible cause of weakened magnetic braking of solar-type stars
- Exoplanet Radio Transits as a Probe for Exoplanetary Magnetic Fields -- Time-dependent MHD Simulations
- Galactic cosmic ray propagation through M dwarf planetary systems
- Catching the wisps: Stellar mass-loss limits from low-frequency radio observations
- Takeout and Delivery: Erasing the Dusty Signature of Late-stage Terrestrial Planet Formation
- First Detection of Radio Emission Associated with a Classical Cepheid
- Radio emission from flaring stars and brown dwarfs
- Comparison of solar multifrequency microwave data with other solar indices for understanding solar and stellar microwave data