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Plaskett fellow at the NRC Herzberg Astronomy and Astrophysics. Exoplanets, direct imaging instruments, and stats tools. #julialang enthusiast.
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ALT A full disk image of Earth, as seen from the Orion capsule. The planet is a pale blue, swirling with white clouds and glowing slightly lighter blue in place from reflected light. From about 8 to 9 o'clock, a large brown landmass is Africa, with the Iberian peninsula twinkling with lights just where the planet curves. At the 1 o'clock spot, aurora glow in a thin green glow, just barely separated from the planet's surface. Earth is set against the black of space. Credit: NASA/Reid Weisman
ALT CASCA is pleased to announce Dr. William Thompson as the 2025 recipient of the Plaskett Medal for the most outstanding doctoral thesis in astronomy or astrophysics. Dr. Thompson’s thesis, defended at the University of Victoria in 2023 under the direction of Profs. Falk Herwig and Christian Marois, is entitled, “Lights in Motion: Observing Nearby Planets with Imaging, Wavefront Sensing, Orbital Detection, and Spectroscopy”. The title hints at the breadth of the research described within Dr. Thompson’s thesis work, including developing new computational methods to analyze angular differential imaging observations and employing these methods to discover a new candidate exoplanet around HR 8799; developing the first multi-technique exoplanet finding code that can incorporate radial velocity, astrometry and high-contrast imaging data; carrying out both simulation and laboratory tests of two new techniques for exoplanet imaging; and more. The thesis external examiner notes that, “it is the
ALT La thèse du M Thompson, Ph. D., soutenue à l'Université de Victoria en 2023 sous la direction des Profs. Falk Herwig et Christian Marois, est intitulée « Lumières en mouvement : observation de planètes proches à l'aide de l'imagerie, de la détection de front d'onde, de la détection orbitale et de la spectroscopie ». Le titre fait allusion à l'ampleur de la recherche décrite dans la thèse. Les travaux de thèse du M Thompson, Ph. D., comprenaient le développement de nouvelles méthodes de calcul pour analyser les observations d'imagerie différentielle angulaire et l'utilisation de ces méthodes pour découvrir une nouvelle exoplanète candidate autour de HR 8799 ; le développement du premier code multitechnique de recherche d'exoplanètes capable d'intégrer la vitesse radiale, l'astrométrie et les données d'imagerie à contraste élevé ; la réalisation de simulations et de tests en laboratoire de deux nouvelles techniques d'imagerie d'exoplanètes, et plus encore. L'examinateur externe de la thè