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[ascl:1309.003]
LOSP: Liège Orbital Solution Package

LOSP is a FORTRAN77 numerical package that computes the orbital parameters of spectroscopic binaries. The package deals with SB1 and SB2 systems and is able to adjust either circular or eccentric orbits through a weighted fit.

[ascl:2102.001]
spinOS: SPectroscopic and INterferometric Orbital Solution finder

Fabry, Matthias; Hawcroft, Calum; Mahy, Laurent; Marchant, Pablo; Le Bouquin, Jean-Baptiste; Sana, Hugues

spinOS calculates binary orbital elements. Given a set of radial velocity measurements of a spectroscopic binary and/or relative position measurement of an astrometric binary, spinOS fits an orbital model by minimizing a chi squared metric. These routines are neatly packaged in a graphical user interface, developed using tkinter, facilitating use. Minimization is achieved by default using a Levenberg-Marquardt algorithm from lmfit [ascl:1606.014]. A Markov Chain Monte Carlo option is available to sample the posterior probability distribution in order to estimate errors on the orbital elements.

[ascl:2208.013]
SPAMMS: Spectroscopic PAtch Model for Massive Stars

Abdul-Masih, Michael; Sana, Hugues; Conroy, Kyle E.; Sundqvist, Jon; Prša, Andrej; Kochoska, Angela; Puls, Joachim

SPAMMS (Spectroscopic PAtch Model for Massive Stars), designed with geometrically deformed systems in mind, combines the eclipsing binary modelling code PHOEBE 2 (ascl:1106.002) and the NLTE radiative transfer code FASTWIND to produce synthetic spectra for systems at given phases, orientations and geometries. SPAMMS reproduces the morphology of observed spectral line profiles for overcontact systems and the Rossiter-Mclaughlin and Struve-Sahade effects.