Post Common Envelope Binaries from SDSS. V: Four eclipsing white dwarf main sequence binaries
S. Pyrzas, B. T. G\"ansicke, T. R. Marsh, A. Aungwerojwit, A., Rebassa-Mansergas, P. Rodr\'iguez-Gil, J. Southworth, M. R. Schreiber, A., Nebot Gomez-Moran, D. Koester

TL;DR
This paper reports the discovery and detailed analysis of four new eclipsing white dwarf-main sequence binaries from SDSS, providing insights into their physical properties and contributing to the understanding of binary evolution.
Contribution
It presents the identification, follow-up observations, and detailed characterization of four new eclipsing WDMS binaries, expanding the sample and refining parameters of such systems.
Findings
Shortest orbital period among known eclipsing WDMS binaries (3 hours).
White dwarf masses mostly 0.4-0.6 solar masses, consistent with binary evolution models.
One white dwarf is unusually massive (>0.85 solar masses).
Abstract
We identify SDSS011009.09+132616.1, SDSS030308.35+005444.1, SDSS143547.87+373338.5 and SDSS154846.00+405728.8 as four eclipsing white dwarf plus main sequence (WDMS) binaries from the Sloan Digital Sky Survey, and report on follow-up observations of these systems. Orbital periods and ephemerides have been established from multi-season photometry. SDSS1435+3733, with Porb=3h has the shortest orbital period of all known eclipsing WDMS binaries. Time-resolved spectroscopic observations have been obtained and the radial velocities of the secondary stars in all four systems were measured. A spectral decomposition/fitting technique was then employed to determine the white dwarf effective temperatures and surface gravities, as well as the spectral types of the companion stars. We used a light curve modeling code to further constrain the masses and radii of the components in all systems. All…
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