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Exomoons to Galactic Structure - High Precision Studies with the Microlensing and Transit Methods (Hardcover, 1st ed. 2018):... Exomoons to Galactic Structure - High Precision Studies with the Microlensing and Transit Methods (Hardcover, 1st ed. 2018)
Supachai Awiphan
R3,628 R3,333 Discovery Miles 33 330 Save R295 (8%) Ships in 12 - 17 working days

This book presents three major studies covering exomoon and exoplanet detection and characterisation. Firstly, it reports the observations and analysis of the atmosphere of the hot Neptune GJ3470b, one of the lowest-mass planets with a measured atmosphere, using transmission spectroscopy techniques. The result provided improved measurements of Rayleigh scattering in the atmosphere and the first limits on additional planetary companions in the system. The second part discusses modeling a Kepler-like satellite's ability of a to detect exomoons by looking for transit timing variations and transit duration variations, demonstrating how exomoons can unambiguously be identified from such data.Lastly, the book examines the development of a state-of-the-art Galactic microlensing simulator, which has been made publicly available. It was used to compare with the largest published sample of microlensing events from the MOA-II survey.

Exomoons to Galactic Structure - High Precision Studies with the Microlensing and Transit Methods (Paperback, Softcover reprint... Exomoons to Galactic Structure - High Precision Studies with the Microlensing and Transit Methods (Paperback, Softcover reprint of the original 1st ed. 2018)
Supachai Awiphan
R2,927 Discovery Miles 29 270 Ships in 10 - 15 working days

This book presents three major studies covering exomoon and exoplanet detection and characterisation. Firstly, it reports the observations and analysis of the atmosphere of the hot Neptune GJ3470b, one of the lowest-mass planets with a measured atmosphere, using transmission spectroscopy techniques. The result provided improved measurements of Rayleigh scattering in the atmosphere and the first limits on additional planetary companions in the system. The second part discusses modeling a Kepler-like satellite's ability of a to detect exomoons by looking for transit timing variations and transit duration variations, demonstrating how exomoons can unambiguously be identified from such data.Lastly, the book examines the development of a state-of-the-art Galactic microlensing simulator, which has been made publicly available. It was used to compare with the largest published sample of microlensing events from the MOA-II survey.

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