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TYC 1489-1117-1


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Bayesian inference of stellar parameters and interstellar extinction using parallaxes and multiband photometry
Astrometric surveys provide the opportunity to measure the absolutemagnitudes of large numbers of stars, but only if the individualline-of-sight extinctions are known. Unfortunately, extinction is highlydegenerate with stellar effective temperature when estimated frombroad-band optical/infrared photometry. To address this problem, Iintroduce a Bayesian method for estimating the intrinsic parameters of astar and its line-of-sight extinction. It uses both photometry andparallaxes in a self-consistent manner in order to provide anon-parametric posterior probability distribution over the parameters.The method makes explicit use of domain knowledge by employing theHertzsprung-Russell Diagram (HRD) to constrain solutions and to ensurethat they respect stellar physics. I first demonstrate this method byusing it to estimate effective temperature and extinction from BVJHKdata for a set of artificially reddened Hipparcos stars, for whichaccurate effective temperatures have been estimated from high-resolutionspectroscopy. Using just the four colours, we see the expected strongdegeneracy (positive correlation) between the temperature andextinction. Introducing the parallax, apparent magnitude and the HRDreduces this degeneracy and improves both the precision (reduces theerror bars) and the accuracy of the parameter estimates, the latter byabout 35 per cent. The resulting accuracy is about 200 K in temperatureand 0.2 mag in extinction. I then apply the method to estimate theseparameters and absolute magnitudes for some 47 000 F, G, K Hipparcosstars which have been cross-matched with Two-Micron All-Sky Survey(2MASS). The method can easily be extended to incorporate the estimationof other parameters, in particular metallicity and surface gravity,making it particularly suitable for the analysis of the 109stars from Gaia.

New Northern hemisphere common proper-motion pairs
A list of 705 new Northern celestial hemisphere common proper-motionpairs as derived from the Second US Naval Observatory CCD AstrographCatalog is presented, along with details of their separation, motion,brightness and colour. Objects of particular interest are noted, and theuse of the catalogue for such work gauged.

Speckle Interferometry at the US Naval Observatory. VII.
The results of 2014 speckle interferometric observations of doublestars, made with the 26 inch (66 cm) refractor of the US NavalObservatory, are presented. These observations are averaged into 1266mean positions and range in separation from 0.21" to 13.41", with a meanseparation of 2.61". This is the seventh in a series of paperspresenting measures obtained with this system and covers the period 2000January 10 through December 8.

Etoiles doubles nouvelles decouvertes a l'Observatoire de Nice (2eme serie).
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Observation and Astrometry data

Constellation:Schlange
Right ascension:15h14m18.65s
Declination:+19°58'17.2"
Apparent magnitude:8.784
Distance:179.856 parsecs
Proper motion RA:-31.9
Proper motion Dec:26.1
B-T magnitude:9.404
V-T magnitude:8.836

Catalogs and designations:
Proper Names   (Edit)
TYCHO-2 2000TYC 1489-1117-1
USNO-A2.0USNO-A2 1050-07439442
HIPHIP 74579

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