Search arXiv⌕ Search

arXiv · astro-ph/9502009

Determination of Atmospheric Parameters of T Tauri Stars

Abstract

The inferred effective temperatures (T$_{\rm eff}$) and surface gravities of T Tauri stars (TTS) are usually contaminated by the presence of a non stellar continuum emission (veiling) and the strong chromospheric activity characteristic of these objects. In this work, we develop a method to determine T$_{\rm eff}$'s and surface gravities (log$\,g$) of a group of TTS. This method is based on the comparison between observed and theoretical molecular and atomic line depth ratios being therefore insensitive to the influence of veiling. We show the strong dependence of our line depth ratios upon gravity and temperature. The resulting gravities, as expected for TTS, average between the values of dwarf and giant stars. Previously published gravities for each of our stars vary widely due in part to the differences in the adopted visual extinction, veiling (if ever considered) and methods of assessing the stellar luminosity. Our values of T$_{\rm eff}$ and log$\,g$ have the uniqueness of being entirely derived from high resolution data and are not affected by circumstellar extinction or veiling when line ratios are used. They therefore serve as more reliable input parameters for future spectral synthesis analyses of T Tauri Stars requiring model atmospheres. We provide a table relating theoretical line depth ratio with T$_{\rm eff}$ and log $\,g$ for easy assessment of TTS fundamental parameters.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

R. Piorno Schiavon, C. Batalha, B. Barbuy. 1995-02-03. Determination of Atmospheric Parameters of T Tauri Stars. https://arxiv.org/abs/astro-ph/9502009

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

Cosmic Conundrums with Quantum Corrections

Darh energy was discovered over 25 years ago and we do not have an explanation of it. Dark matter comprises 95% of matter in the universe and we still don't know what it is. The Webb telescope has been finding fully formed galaxies with massive black holes millions of times the mass of the sun in the early universe and we don't have any explanation. A quantum density limitation will be used to solve these and other outstanding problems.

astro-ph↗

On binary pulsars and the force of gravity

The energy-momentum budget of the astrophysical systems can be studied by the exact local conservation equation derived by Landau and Lifshitz. We show that a similar equation is valid for the Einstein-Cartan gravity. We reanalyze a binary pulsar system using the Landau-Lifshitz conservation equation and show that the orbital period change rate can be completely understood as a curvature backreaction process. Taking into account the detailed theoretical and observational research of relativistic binary pulsar systems, especially the system of Hulse and Taylor, we conclude that general relativity and astrophysical observations rule out the existence of gravitational radiation. We comment upon the LIGO GW events and their alternative explanation, as well as the recent pulsar timing arrays data.

astro-ph↗

Oscillation frequencies and mode lifetimes in alpha Centauri A

We analyse our recently-published velocity measurements of alpha Cen A (Butler et al. 2004). After adjusting the weights on a night-by-night basis in order to optimize the window function to minimize sidelobes, we extract 42 oscillation frequencies with l=0 to 3 and measure the large and small frequency separations. We give fitted relations to these frequencies that can be compared with theoretical models and conclude that the observed scatter about these fits is due to the finite lifetimes of the oscillation modes. We estimate the mode lifetimes to be 1-2 d, substantially shorter than in the Sun.

astro-ph↗