DEVELOPING PREDICTORS OF RADIAL VELOCITY JITTER FROM K2 LIGHT CURVES

  • Bastien, Fabienne (PI)

Project: Research project

Project Details

Description

DESCRIPTION OF SCIENCE GOALS&OBJECTIVES AND RELEVANCE TO PROPOSED CALL MUCH OF EXOPLANET SCIENCE HINGES ON A THOROUGH UNDERSTANDING OF THE PLANET S HOST STAR. AS A RESULT OF THE PUSH TOWARD LOWER MASS AND MORE WIDELY SEPARATED EXOPLANETS IT HAS BECOME INCREASINGLY IMPORTANT TO PROPERLY CHARACTERIZE EXOPLANET HOSTS AND EFFICIENTLY DISTINGUISH THE SIGNALS FROM PLANETS FROM SIGNALS FROM THE STAR ITSELF. CURRENTLY STELLAR PHYSICAL PROCESSES ON THE SURFACES OF STARS POSES A MAJOR DETERRENT TO OUR ABILITY TO DETECT EXOPLANETS. IN RADIAL VELOCITY (RV) MEASUREMENTS THESE PROCESSES INDUCE NOISE COINED JITTER THAT CAN IMITATE OR DROWN OUT THE SIGNALS OF PLANETS. AS NEW TRANSITING PLANETS ARE DISCOVERED BY K2 AND TESS IT WILL BE IMPERATIVE TO HAVE NEW METHODS OF PRIORITIZING GROUND-BASED RV FOLLOW-UP ESPECIALLY GIVEN THAT KEPLER ALONE PROVIDED MORE PLANET CANDIDATES THAN CAN BE FOLLOWED-UP IN A REASONABLE TIME-FRAME WITH ALL GROUND-BASED RESOURCES COMBINED. BY ACCURATELY PREDICTING THE LEVEL OF STELLAR JITTER OF A HOST STAR WE CAN READILY IDENTIFY THE MOST PROMISING TARGETS FOR BOTH THE RV FOLLOW-UP OF TRANSITING PLANET CANDIDATES AND THE RV DISCOVERY OF NEW EXOPLANETS. WE PROPOSE TO USE THE HIGH-PRECISION LIGHT CURVES FROM THE K2 MISSION WITH ARCHIVAL RV JITTER AND ACTIVITY MEASUREMENTS TO (1) DEVELOP AN EMPIRICAL RELATION BETWEEN RV JITTER AND LIGHT CURVE VARIATIONS FOLLOWING THE METHODOLOGY DEVELOPED BY BASTIEN ET AL. (2014) AND (2) DETERMINE THE DEPENDENCY OF THE RELATION ON AGE SPECTRAL TYPE AND MAGNETIC ACTIVITY. THESE RELATIONS WILL PROVE USEFUL FOR RV FOLLOWUP OF EXISTING TRANSITING EXOPLANET CANDIDATES. WE WILL USE THEM TO IDENTIFY TARGETS THAT HAVE LOW LEVELS OF RV JITTER AND USE THEM TO UNCOVER THE PHYSICAL CAUSES OF RV JITTER WHICH WILL HELP OPTIMIZE THE USE OF UPCOMING RV FACILITIES LIKE NASA S NEID SPECTROGRAPH.
StatusFinished
Effective start/end date12/11/171/18/18

Funding

  • NASA Headquarters

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