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A pipeline for searching and fitting instrumental glitches in LISA data
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Instrumental artefacts, such as glitches, can significantly compromise the scientific output of LISA. Our methodology employs advanced Bayesian techniques, including Reversible Jump Markov Chain Monte Carlo and parallel tempering to find and characterize glitches and astrophysical signals. The robustness of the pipeline is demonstrated through its ability to simultaneously handle diverse glitch morphologies and it is validated with a 'Spritz'-type data set from the LISA Data Challenge. Our approach enables accurate inference on Massive Black Hole Binaries, while simultaneously characterizing both instrumental artefacts and noise. These results present a significant development in strategies for differentiating between instrumental noise and astrophysical signals, which will ultimately improve the accuracy and reliability of source population analyses with LISA.
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Cited by 1 Pith paper
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Identifying galactic binary systems of neutron stars and black holes with LISA
LISA could measure individual component masses for about 10% of detected galactic black hole binaries and about 50% of neutron star binaries, enabling classification of the compact objects.
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