We propose to observe with Kepler an age sequence of nearby uncrowded open clusters. The current Kepler field contains very few (only 4) somewhat distant and/or old clusters. Nearby open clusters are already well characterized from ground- and many space-based observations. Our proposal focuses on mid and upper main-sequence variables (main sequence and pre-main sequence gamma Dor or delta Scuti stars, SPB/beta Cep stars, Cepheids, or yellow supergiants), having periods of hours to days accessible by longer cadence observations. Asteroseismology for these objects to date is limited by the number of modes observable from the ground, difficulty in obtaining spectroscopic or photometric mode ID for the fainter targets that have been observed by Kepler, uncertainties in interior and initial abundances, especially for stars with abundance anomalies, uncertainties in distance/luminosity, and lack of knowledge of prior evolution history. The additional constraints of common age, distance and initial abundances in clusters will place these variables in their evolutionary context, and help unlock some of the science and reduce uncertainties for understanding star formation and stellar evolution.
@article{arxiv.1310.0772,
title = {Observing Open Clusters with a Sequence of Ages with Kepler},
author = {Joyce A. Guzik and Paul A. Bradley and Robert Szabo and Laszlo Molnar and Andrzej Pigulski and Konstanze Zwintz and Chow-Choong Ngeow and Jesper Schou and Gerald Handler},
journal= {arXiv preprint arXiv:1310.0772},
year = {2013}
}
Comments
A White Paper in response to NASA call for community input for alternative science investigations for the Kepler spacecraft