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Related papers: Effective temperature vs line-depth ratio for ELOD…

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The effective temperature, one of the most fundamental atmospheric parameters of a star, can be estimated using various methods, and here we focus on the method using line-depth ratios (LDRs). This method combines low- and high-excitation…

The technique of line depth ratios (LDR) is one of the methods to determine the effective temperature of a star. They are crucial in the spectroscopic studies of variable stars like Cepheids since no simultaneous photometry is usually…

Solar and Stellar Astrophysics · Physics 2023-07-12 V. Kovtyukh , B. Lemasle , N. Nardetto , G. Bono , R. da Silva , N. Matsunaga , A. Yushchenko , K. Fukue , E. K. Grebel

A line-depth ratio (LDR) of two spectral lines with different excitation potentials is expected to be correlated with the effective temperature ($T_\mathrm{eff}$). It is possible to determine $T_\mathrm{eff}$ of a star with a precision of…

Determining accurate effective temperatures of stars buried in the dust-obscured Galactic regions is extremely difficult from photometry. Fortunately, high-resolution infrared spectroscopy is a powerful tool for determining the temperatures…

Line depth ratios measured on high resolution (R=42000), high S/N echelle spectra are used for the determination of precise effective temperatures of 181 F,G,K Main Sequence stars with about solar metallicity (-0.5 < [Fe/H] < +0.5). A set…

Astrophysics · Physics 2009-11-10 V. V. Kovtyukh , C. Soubiran , S. I. Belik , N. I. Gorlova

Determining the effective temperatures (Teff) of red supergiants (RSGs) observationally is important in many fields of stellar physics and galactic astronomy, yet some significant difficulties remain due to model uncertainty originating…

The ratio of the depths of spectral lines is a powerful indicator of the effective temperature. The method based on this analysis is capable of discerning small temperature variations of individual stars. We apply this spectroscopic data…

Astrophysics · Physics 2007-05-23 K. Biazzo , A. Frasca , S. Catalano , E. Marilli

Ratios of carefully selected line depths are sensitive to stellar effective temperature ($T_\mathrm{eff}$). Relations established between line-depth ratio (LDR) and $T_\mathrm{eff}$ allow one to determine $T_\mathrm{eff}$ precisely.…

Solar and Stellar Astrophysics · Physics 2019-03-04 Mingjie Jian , Noriyuki Matsunaga , Kei Fukue

We calculate directly determined values for effective temperature ($T_{\rm EFF}$) and radius ($R$) for 191 giant stars based upon high resolution angular size measurements from optical interferometry at the Palomar Testbed Interferometer.…

We test our capability of deriving stellar physical parameters of giant stars by analysing a sample of field stars and the well studied open cluster IC 4651 with different spectroscopic methods. The use of a technique based on line-depth…

High-resolution, near-infrared spectra will be the primary tool for finding and characterizing Earth-like planets around low-mass stars. Yet, the properties of exoplanets can not be precisely determined without accurate and precise…

We have observed a large sample of compact planetary nebulae in the near-infrared to determine how the 2^1P-2^1S HeI line at 2.058um varies as a function of stellar effective temperature, Teff. The ratio of this line with HI Br g at 2.166um…

Astrophysics · Physics 2009-10-31 S. L. Lumsden , P. J. Puxley , M. G. Hoare

The mass-luminosity (M-L), mass-radius (M-R) and mass-effective temperature ($M-T_{eff}$) diagrams for a subset of galactic nearby main-sequence stars with masses and radii accurate to $\leq 3\%$ and luminosities accurate to $\leq 30\%$…

Solar and Stellar Astrophysics · Physics 2015-06-23 Z. Eker , F. Soydugan , E. Soydugan , S. Bilir , E. Yaz Gokce , I. Steer , M. Tuysuz , T. Senyuz , O. Demircan

The high-temperature ratio (HTR) is a parameter quantifying changes of the shape of the high-temperature part of the LiF:Mg,Ti glow-curve after exposure to densely ionizing radiation. It was introduced in order to estimate the effective LET…

Instrumentation and Detectors · Physics 2014-02-28 P. Bilski , M. Sadel , J. Swakon , A. Weber

We derive the stellar parameters of a sample of Galactic early-O type stars by analysing their UV and Far-UV spectra from FUSE (905-1187A), IUE, HST-STIS and ORFEUS (1200-2000A). The data have been modeled with spherical, hydrodynamic,…

Astrophysics · Physics 2009-11-10 Miriam Garcia , Luciana Bianchi

The mass-radius relationship of white dwarfs (WDs) is one of their defining characteristics, largely derived from electron degeneracy pressure. We present a model-independent study of the observed mass-radius relationship in WD binaries of…

Solar and Stellar Astrophysics · Physics 2024-08-29 Jin Lim , Ji-Yu Kim , Maurice H. P. M. van Putten

As part of the Young Exoplanets Spectroscopic Survey (YESS), this study explores the spot variability of 13 T Tauri Stars (TTSs) in the near-infrared $H$ band, using spectra from the Immersion GRating INfrared Spectrometer (IGRINS). By…

Solar and Stellar Astrophysics · Physics 2024-06-21 Shih-Yun Tang , Christopher M. Johns-Krull , L. Prato , Asa G. Stahl

We describe a technique for deriving effective temperatures, surface gravities, rotation velocities, and radial velocities from high resolution near-IR spectra. The technique matches the observed near-IR spectra to spectra synthesized from…

Astrophysics · Physics 2009-11-10 G. W. Doppmann , D. T. Jaffe

In Data Release 9 of LAMOST, we present measurements of v sin i for a total of 121,698 stars measured using the Medium Resolution Spectrograph (MRS) and 80,108 stars using the Low Resolution Spectrograph (LRS). These values were obtained…

Solar and Stellar Astrophysics · Physics 2024-01-09 Fang Zuo , A-Li Luo , Bing Du , Yinbi Li , Hugh R. A. Jones , Yi-han Song , Xiao Kong , Yan-xin Guo

Johnson BVRI photometric data for individual components of binary systems have been provided by ten Brummelaar et al. (2000). This is essential because such binaries could play a critical role in calibrating the single-star stellar…

Astrophysics · Physics 2009-11-07 E. Lastennet , J. Fernandes , Th. Lejeune
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