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Reanalyzing the Light Curves and Absolute Parameters of Twenty Contact Binary Stars Using TESS Data
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Reanalyzing contact binaries with space-based photometric data and investigating possible parameter changes can yield accurate samples for theoretical studies. We investigated light curve solutions and fundamental parameters for twenty contact binary systems. The most recent Transiting Exoplanet Survey Satellite (TESS) data is used to analyze. The target systems in the investigation have an orbital period of less than 0.58 days. Light curve solutions were performed using the PHysics Of Eclipsing BinariEs (PHOEBE) Python code version 2.4.9. The results show that systems had various mass ratios from q=0.149 to q=3.915, fillout factors from f=0.072 to f=0.566, and inclinations from i=52.8deg to i=87.3deg. The effective temperature of the stars was less than 7016 K, which was expected given the features of most contact binary stars. Twelve of the target systems' light curves were asymmetrical in the maxima, showing the O'Connell effect, and a starspot was required for light curve solutions. The estimation of the absolute parameters of the binary systems was presented using the a-P empirical relationship and discussed. The orbital angular momentum (J_0) of the systems was calculated. The positions of the systems were also depicted on the M-L, M-R, q-L_ratio, M_tot-J_0, and T-M diagrams.
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Cited by 2 Pith papers
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The investigation of 84 TESS totally eclipsing contact binaries
New photometric solutions and absolute parameters are presented for 84 TESS contact binaries, including 15 candidate merger systems.
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Minute-cadence Observations of the LAMOST Fields with the TMTS: VI. Absolute Physical Parameters of Contact Binaries
Absolute physical parameters of ten W-type contact binaries are derived from simultaneous W-D fits to TMTS light curves and first-time LAMOST radial velocities.
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