@article{19405,
  abstract     = {In the third APOKASC catalog, we present data for the complete sample of 15,808 evolved stars with APOGEE spectroscopic parameters and Kepler asteroseismology. We used 10 independent asteroseismic analysis techniques and anchor our system on fundamental radii derived from Gaia L and spectroscopic Teff. We provide evolutionary state, asteroseismic surface gravity, mass, radius, age, and the data used to derive them for 12,418 stars. This includes 10,036 exceptionally precise measurements, with median fractional uncertainties in 
vmax, Δν, mass, radius, and age of 0.6%, 0.6%, 3.8%, 1.8%, and 11.1%, respectively. We provide more limited data for 1624 additional stars that either have lower-quality data or are outside of our primary calibration domain. Using lower red giant branch (RGB) stars, we find a median age for the chemical thick disk of 9.14 ± 0.05(ran) ± 0.9(sys) Gyr with an age dispersion of 1.1 Gyr, consistent with our error model. We calibrate our red clump (RC) mass loss to derive an age consistent with the lower RGB and provide asymptotic GB and RGB ages for luminous stars. We also find a sharp upper-age boundary in the chemical thin disk. We find that scaling relations are precise and accurate on the lower RGB and RC, but they become more model dependent for more luminous giants and break down at the tip of the RGB. We recommend the use of multiple methods, calibration to a fundamental scale, and the use of stellar models to interpret frequency spacings.},
  author       = {Pinsonneault, Marc H. and Zinn, Joel C. and Tayar, Jamie and Serenelli, Aldo and García, Rafael A. and Mathur, Savita and Vrard, Mathieu and Elsworth, Yvonne P. and Mosser, Benoit and Stello, Dennis and Bell, Keaton J. and Bugnet, Lisa Annabelle and Corsaro, Enrico and Gaulme, Patrick and Hekker, Saskia and Hon, Marc and Huber, Daniel and Kallinger, Thomas and Cao, Kaili and Johnson, Jennifer A. and Liagre, Bastien and Patton, Rachel A. and Santos, Ângela R.G. and Basu, Sarbani and Beck, Paul G. and Beers, Timothy C. and Chaplin, William J. and Cunha, Katia and Frinchaboy, Peter M. and Girardi, Léo and Godoy-Rivera, Diego and Holtzman, Jon A. and Jönsson, Henrik and Mészáros, Szabolcs and Reyes, Claudia and Rix, Hans Walter and Shetrone, Matthew and Smith, Verne V. and Spoo, Taylor and Stassun, Keivan G. and Wang, Ji},
  issn         = {0067-0049},
  journal      = {Astrophysical Journal, Supplement Series},
  number       = {2},
  publisher    = {IOP Publishing},
  title        = {{APOKASC-3: The third joint spectroscopic and asteroseismic catalog for evolved stars in the Kepler fields}},
  doi          = {10.3847/1538-4365/ad9fef},
  volume       = {276},
  year         = {2025},
}

@article{11610,
  abstract     = {Studies of Galactic structure and evolution have benefited enormously from Gaia kinematic information, though additional, intrinsic stellar parameters like age are required to best constrain Galactic models. Asteroseismology is the most precise method of providing such information for field star populations en masse, but existing samples for the most part have been limited to a few narrow fields of view by the CoRoT and Kepler missions. In an effort to provide well-characterized stellar parameters across a wide range in Galactic position, we present the second data release of red giant asteroseismic parameters for the K2 Galactic Archaeology Program (GAP). We provide ${\nu }_{\max }$ and ${\rm{\Delta }}\nu $ based on six independent pipeline analyses; first-ascent red giant branch (RGB) and red clump (RC) evolutionary state classifications from machine learning; and ready-to-use radius and mass coefficients, κR and κM, which, when appropriately multiplied by a solar-scaled effective temperature factor, yield physical stellar radii and masses. In total, we report 4395 radius and mass coefficients, with typical uncertainties of 3.3% (stat.) ± 1% (syst.) for κR and 7.7% (stat.) ± 2% (syst.) for κM among RGB stars, and 5.0% (stat.) ± 1% (syst.) for κR and 10.5% (stat.) ± 2% (syst.) for κM among RC stars. We verify that the sample is nearly complete—except for a dearth of stars with ${\nu }_{\max }\lesssim 10\mbox{--}20\,\mu \mathrm{Hz}$—by comparing to Galactic models and visual inspection. Our asteroseismic radii agree with radii derived from Gaia Data Release 2 parallaxes to within 2.2% ± 0.3% for RGB stars and 2.0% ± 0.6% for RC stars.},
  author       = {Zinn, Joel C. and Stello, Dennis and Elsworth, Yvonne and García, Rafael A. and Kallinger, Thomas and Mathur, Savita and Mosser, Benoît and Bugnet, Lisa Annabelle and Jones, Caitlin and Hon, Marc and Sharma, Sanjib and Schönrich, Ralph and Warfield, Jack T. and Luger, Rodrigo and Pinsonneault, Marc H. and Johnson, Jennifer A. and Huber, Daniel and Aguirre, Victor Silva and Chaplin, William J. and Davies, Guy R. and Miglio, Andrea},
  issn         = {1538-4365},
  journal      = {The Astrophysical Journal Supplement Series},
  keywords     = {Space and Planetary Science, Astronomy and Astrophysics},
  number       = {2},
  publisher    = {IOP Publishing},
  title        = {{The K2 galactic archaeology program data release 2: Asteroseismic results from campaigns 4, 6, and 7}},
  doi          = {10.3847/1538-4365/abbee3},
  volume       = {251},
  year         = {2020},
}

@article{11623,
  abstract     = {Brightness variations due to dark spots on the stellar surface encode information about stellar surface rotation and magnetic activity. In this work, we analyze the Kepler long-cadence data of 26,521 main-sequence stars of spectral types M and K in order to measure their surface rotation and photometric activity level. Rotation-period estimates are obtained by the combination of a wavelet analysis and autocorrelation function of the light curves. Reliable rotation estimates are determined by comparing the results from the different rotation diagnostics and four data sets. We also measure the photometric activity proxy Sph using the amplitude of the flux variations on an appropriate timescale. We report rotation periods and photometric activity proxies for about 60% of the sample, including 4431 targets for which McQuillan et al. did not report a rotation period. For the common targets with rotation estimates in this study and in McQuillan et al., our rotation periods agree within 99%. In this work, we also identify potential polluters, such as misclassified red giants and classical pulsator candidates. Within the parameter range we study, there is a mild tendency for hotter stars to have shorter rotation periods. The photometric activity proxy spans a wider range of values with increasing effective temperature. The rotation period and photometric activity proxy are also related, with Sph being larger for fast rotators. Similar to McQuillan et al., we find a bimodal distribution of rotation periods.},
  author       = {Santos, A. R. G. and García, R. A. and Mathur, S. and Bugnet, Lisa Annabelle and van Saders, J. L. and Metcalfe, T. S. and Simonian, G. V. A. and Pinsonneault, M. H.},
  issn         = {0067-0049},
  journal      = {The Astrophysical Journal Supplement Series},
  keywords     = {Space and Planetary Science, Astronomy and Astrophysics, methods: data analysis, stars: activity, stars: low-mass, stars: rotation, starspots, techniques: photometric},
  number       = {1},
  publisher    = {IOP Publishing},
  title        = {{Surface rotation and photometric activity for Kepler targets. I. M and K main-sequence stars}},
  doi          = {10.3847/1538-4365/ab3b56},
  volume       = {244},
  year         = {2019},
}

@article{17726,
  abstract     = {We present deep unbiased spectroscopy of the Hubble Ultra Deep Field (UDF) carried out using the slitless grism spectroscopy mode of the Advance Camera for Surveys on the Hubble Space Telescope (HST). The GRIsm ACS Program for Extragalactic Science (GRAPES) achieves continuum detection as faint as zAB=27.2 using 40 orbits (9.2×10^4 seconds) on HST. The data were taken at four orientation angles to correct for the overlap of spectra. GRAPES data provide a unique, uninterrupted, low resolution (R=100) spectral coverage for 5500Å<λ<10500Å, and allow us to detect high redshift galaxies at 4<z<7 whether they have $\lya$ lines or just show the Lyman Break, as well as find low luminosity AGNs in an unbiased fashion. This paper describes in detail the observations and the data reduction, and examines the quality of the extracted spectra. Subsequent papers will deal with the analysis of the data. The extracted and calibrated GRAPES spectra will be available from MAST at STScI.},
  author       = {Pirzkal, N. and Xu, C. and Malhotra, S. and Rhoads, J. E. and Koekemoer, A. M. and Moustakas, L. A. and Walsh, J. R. and Windhorst, R. A. and Daddi, E. and Cimatti, A. and Ferguson, H. C. and Gardner, Jonathan P. and Gronwall, C. and Haiman, Zoltán and Kummel, M. and Panagia, N. and Pasquali, A. and Stiavelli, M. and di Serego Alighieri, S. and Tsvetanov, Z. and Vernet, J. and Yan, H.},
  issn         = {0067-0049},
  journal      = {The Astrophysical Journal Supplement Series},
  number       = {2},
  pages        = {501--508},
  publisher    = {American Astronomical Society},
  title        = {{GRAPES, grism spectroscopy of the hubble ultra deep field: Description and data reduction}},
  doi          = {10.1086/422582},
  volume       = {154},
  year         = {2004},
}

@article{17802,
  abstract     = {The Sloan Digital Sky Survey has confirmed the existence of populations of broad absorption line (BAL) quasars with various unusual properties. We present and discuss 23 such objects and consider the implications of their wide range of properties for models of BAL outflows and quasars in general. We have discovered one BAL quasar with a record number of absorption lines. Two other similarly complex objects with many narrow troughs show broad Mg II absorption extending longward of their systemic host galaxy redshifts. This can be explained as absorption of an extended continuum source by the rotation-dominated base of a disk wind. Five other objects have absorption that removes an unprecedented ∼90% of all flux shortward of Mg II. The absorption in one of them has varied across the ultraviolet with an amplitude and rate of change as great as ever seen. This same object may also show broad Hβ absorption. Numerous reddened BAL quasars have been found, including at least one reddened mini-BAL quasar with very strong Fe II emission. The five reddest objects have continuum reddenings of E(B-V) ≃ 0.5, and in two of them we find strong evidence that the reddening curve is even steeper than that of the SMC. We have found at least one object with absorption from Fe III but not Fe II. This may be due to a high column density of moderately high ionization gas, but the Fe III level populations must also be affected by some sort of resonance. Finally, we have found two luminous, probably reddened high-redshift objects that may be BAL quasars whose troughs partially cover different regions of the continuum source as a function of velocity.},
  author       = {Hall, Patrick B. and Anderson, Scott F. and Strauss, Michael A. and York, Donald G. and Richards, Gordon T. and Fan, Xiaohui and Knapp, G. R. and Schneider, Donald P. and Vanden Berk, Daniel E. and Geballe, T. R. and Bauer, Amanda E. and Becker, Robert H. and Davis, Marc and Rix, Hans‐Walter and Nichol, R. C. and Bahcall, Neta A. and Brinkmann, J. and Brunner, Robert and Connolly, A. J. and Csabai, Istvan and Doi, Mamoru and Fukugita, Masataka and Gunn, James E. and Haiman, Zoltán and Harvanek, Michael and Heckman, Timothy M. and Hennessy, G. S. and Inada, Naohisa and Ivezić, Željko and Johnston, David and Kleinman, S. and Krolik, Julian H. and Krzesinski, Jurek and Kunszt, Peter Z. and Lamb, D. Q. and Long, Daniel C. and Lupton, Robert H. and Miknaitis, Gajus and Munn, Jeffrey A. and Narayanan, Vijay K. and Neilsen, Eric and Newman, P. R. and Nitta, Atsuko and Okamura, Sadanori and Pentericci, Laura and Pier, Jeffrey R. and Schlegel, David J. and Snedden, S. and Szalay, Alexander S. and Thakar, Anirudda R. and Tsvetanov, Zlatan and White, Richard L. and Zheng, Wei},
  issn         = {1538-4365},
  journal      = {The Astrophysical Journal Supplement Series},
  number       = {2},
  pages        = {267--309},
  publisher    = {American Astronomical Society},
  title        = {{Unusual broad absorption line quasars from the sloan digital sky survey}},
  doi          = {10.1086/340546},
  volume       = {141},
  year         = {2002},
}

