Eclipsing Binaries (EBs) are known to be the source of most accurate stellar parameters, which are important for testing theories of stellar evolution. With improved quality and quantity of observations using space telescopes like TESS, there is an urgent need for accuracy in modeling to obtain precise parameters. We use the soon to be released PHOEBE 2.3 EB modeling package to test the robustness and accuracy of parameters and their dependency on choice of parameters for optimization
Detached eclipsing binaries are a fundamental tool for measuring the physical parameters of stars th...
We present a new algorithm, Eclipsing Binary Automated Solver (EBAS), to analyse light curves of ecl...
Context. The measurement of apsidal motion rates in eccentric eclipsing binaries is a unique way to ...
Eclipsing binaries (EBs) provide a direct determination of fundamental parameters, and detached ecli...
Modeling tools for eclipsing binary stars are lagging behind the modern observations that are unprec...
The analysis of eclipsing binary star systems provides one of the most reliable methods of accuratel...
Eclipsing Binary Stars focuses on the mathematical formulation of astrophysical models for the light...
Recent ultra-high precision observations of eclipsing binaries, especially data acquired by the Kepl...
We discuss methods for modeling eclipsing binary stars using the ”physi-cal”, ”simplified ” and ”phe...
Existing but largely unused binary star model capabilities are examined. An easily implemented schem...
Analysing and modelling thousands of eclipsing binary light curves is a methodologically and computa...
PHOEBE (PHysics Of Eclipsing BinariEs) is a modeling package for eclipsing binary stars, built on to...
This book focuses on the formulation of mathematical models for the light curves of eclipsing binary...
This book focuses on the formulation of mathematical models for the light curves of eclipsing binary...
We present the results of a series of simulations designed to determine the observing parameters tha...
Detached eclipsing binaries are a fundamental tool for measuring the physical parameters of stars th...
We present a new algorithm, Eclipsing Binary Automated Solver (EBAS), to analyse light curves of ecl...
Context. The measurement of apsidal motion rates in eccentric eclipsing binaries is a unique way to ...
Eclipsing binaries (EBs) provide a direct determination of fundamental parameters, and detached ecli...
Modeling tools for eclipsing binary stars are lagging behind the modern observations that are unprec...
The analysis of eclipsing binary star systems provides one of the most reliable methods of accuratel...
Eclipsing Binary Stars focuses on the mathematical formulation of astrophysical models for the light...
Recent ultra-high precision observations of eclipsing binaries, especially data acquired by the Kepl...
We discuss methods for modeling eclipsing binary stars using the ”physi-cal”, ”simplified ” and ”phe...
Existing but largely unused binary star model capabilities are examined. An easily implemented schem...
Analysing and modelling thousands of eclipsing binary light curves is a methodologically and computa...
PHOEBE (PHysics Of Eclipsing BinariEs) is a modeling package for eclipsing binary stars, built on to...
This book focuses on the formulation of mathematical models for the light curves of eclipsing binary...
This book focuses on the formulation of mathematical models for the light curves of eclipsing binary...
We present the results of a series of simulations designed to determine the observing parameters tha...
Detached eclipsing binaries are a fundamental tool for measuring the physical parameters of stars th...
We present a new algorithm, Eclipsing Binary Automated Solver (EBAS), to analyse light curves of ecl...
Context. The measurement of apsidal motion rates in eccentric eclipsing binaries is a unique way to ...