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Full-Text Articles in Physical Sciences and Mathematics
Mass Transfer Variations In Ux Monocerotis: Eight Years Of Automated Photometric Monitoring, Edward C. Olson, Gregory W. Henry, Paul B. Etzel
Mass Transfer Variations In Ux Monocerotis: Eight Years Of Automated Photometric Monitoring, Edward C. Olson, Gregory W. Henry, Paul B. Etzel
Information Systems and Engineering Management Research Publications
We analyze eight years (1999–2007) of automated photometric observations of the active Algol binary UX Monocerotis to search for mass transfer bursts similar to those seen in U Cephei. The largest photometric anomaly is the mean gainer luminosity difference between the stream-impact hemisphere and the opposite hemisphere. We find an updated Wilson–Devinney solution for earlier six-color observations. The UX Mon donor star fills its Roche lobe and the gainer nearly fills its rotational lobe. Instead of isolated bursts of the U Cep type, we found nearly continuous brightness fluctuations likely produced by variable mass transfer. We discuss implications for mass …
Transit Spectrophotometry Of The Exoplanet Hd 189733b I. Searching For Water But Finding Haze With Hst Nicmos, David K. Sing, Jean-Michel Désert, Alain Lecavelier Des Etangs, Gilda E. Ballester, Alfred Vidal-Madjar, Vivien Parmentier, Guillaume Hébrard, Gregory W. Henry
Transit Spectrophotometry Of The Exoplanet Hd 189733b I. Searching For Water But Finding Haze With Hst Nicmos, David K. Sing, Jean-Michel Désert, Alain Lecavelier Des Etangs, Gilda E. Ballester, Alfred Vidal-Madjar, Vivien Parmentier, Guillaume Hébrard, Gregory W. Henry
Information Systems and Engineering Management Research Publications
We present Hubble Space Telescope near-infrared transit photometry of the nearby hot-Jupiter HD 189733b. The observations were taken with the NICMOS instrument during five transits, with three transits executed with a narrowband filter at 1.87 m and two performed with a narrowband filter at 1.66 m. Our observing strategy using narrowband filters is insensitive to the usual HST intra-orbit and orbit-to-orbit measurement of systematic errors, allowing us to accurately and robustly measure the near-IR wavelength dependance of the planetary radius. Our measurements fail to reproduce the previously claimed detection of an absorption signature of atmospheric H2O below …