CSI 2264: SIMULTANEOUS OPTICAL AND INFRARED LIGHT CURVES OF YOUNG DISK-BEARING STARS IN NGC 2264 WITH CoRoT and SPITZER —EVIDENCE FOR MULTIPLE ORIGINS OF VARIABILITY

We present the Coordinated Synoptic Investigation of NGC 2264, a continuous 30 day multi-wavelength photometric monitoring campaign on more than 1000 young cluster members using 16 telescopes. The unprecedented combination of multi-wavelength, high-precision, high-cadence, and long-duration data ope...

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Published inThe Astronomical journal Vol. 147; no. 4; pp. 82 - 47
Main Authors Cody, Ann Marie, Stauffer, John, Baglin, Annie, Micela, Giuseppina, Rebull, Luisa M., Flaccomio, Ettore, Morales-Calderón, María, Aigrain, Suzanne, Bouvier, Jèrôme, Hillenbrand, Lynne A., Gutermuth, Robert, Song, Inseok, Turner, Neal, Alencar, Silvia H. P., Zwintz, Konstanze, Plavchan, Peter, Carpenter, John, Findeisen, Krzysztof, Carey, Sean, Terebey, Susan, Hartmann, Lee, Calvet, Nuria, Teixeira, Paula, Vrba, Frederick J., Wolk, Scott, Covey, Kevin, Poppenhaeger, Katja, Günther, Hans Moritz, Forbrich, Jan, Whitney, Barbara, Affer, Laura, Herbst, William, Hora, Joseph, Barrado, David, Holtzman, Jon, Marchis, Franck, Wood, Kenneth, Guimarães, Marcelo Medeiros, Lillo Box, Jorge, Gillen, Ed, McQuillan, Amy, Espaillat, Catherine, Allen, Lori, D'Alessio, Paola, Favata, Fabio
Format Journal Article
LanguageEnglish
Published United States American Astronomical Society 01.04.2014
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Abstract We present the Coordinated Synoptic Investigation of NGC 2264, a continuous 30 day multi-wavelength photometric monitoring campaign on more than 1000 young cluster members using 16 telescopes. The unprecedented combination of multi-wavelength, high-precision, high-cadence, and long-duration data opens a new window into the time domain behavior of young stellar objects. Here we provide an overview of the observations, focusing on results from Spitzer and CoRoT. The highlight of this work is detailed analysis of 162 classical T Tauri stars for which we can probe optical and mid-infrared flux variations to 1% amplitudes and sub-hour timescales. We present a morphological variability census and then use metrics of periodicity, stochasticity, and symmetry to statistically separate the light curves into seven distinct classes, which we suggest represent different physical processes and geometric effects. We provide distributions of the characteristic timescales and amplitudes and assess the fractional representation within each class. The largest category (>20%) are optical "dippers" with discrete fading events lasting ~1-5 days. The degree of correlation between the optical and infrared light curves is positive but weak; notably, the independently assigned optical and infrared morphology classes tend to be different for the same object. Assessment of flux variation behavior with respect to (circum)stellar properties reveals correlations of variability parameters with H alpha emission and with effective temperature. Overall, our results point to multiple origins of young star variability, including circumstellar obscuration events, hot spots on the star and/or disk, accretion bursts, and rapid structural changes in the inner disk.
AbstractList We present the Coordinated Synoptic Investigation of NGC 2264, a continuous 30 day multi-wavelength photometric monitoring campaign on more than 1000 young cluster members using 16 telescopes. The unprecedented combination of multi-wavelength, high-precision, high-cadence, and long-duration data opens a new window into the time domain behavior of young stellar objects. Here we provide an overview of the observations, focusing on results from Spitzer and CoRoT. The highlight of this work is detailed analysis of 162 classical T Tauri stars for which we can probe optical and mid-infrared flux variations to 1% amplitudes and sub-hour timescales. We present a morphological variability census and then use metrics of periodicity, stochasticity, and symmetry to statistically separate the light curves into seven distinct classes, which we suggest represent different physical processes and geometric effects. We provide distributions of the characteristic timescales and amplitudes and assess the fractional representation within each class. The largest category (>20%) are optical "dippers" with discrete fading events lasting ~1-5 days. The degree of correlation between the optical and infrared light curves is positive but weak; notably, the independently assigned optical and infrared morphology classes tend to be different for the same object. Assessment of flux variation behavior with respect to (circum)stellar properties reveals correlations of variability parameters with H alpha emission and with effective temperature. Overall, our results point to multiple origins of young star variability, including circumstellar obscuration events, hot spots on the star and/or disk, accretion bursts, and rapid structural changes in the inner disk.
We present the Coordinated Synoptic Investigation of NGC 2264, a continuous 30 day multi-wavelength photometric monitoring campaign on more than 1000 young cluster members using 16 telescopes. The unprecedented combination of multi-wavelength, high-precision, high-cadence, and long-duration data opens a new window into the time domain behavior of young stellar objects. Here we provide an overview of the observations, focusing on results from Spitzer and CoRoT. The highlight of this work is detailed analysis of 162 classical T Tauri stars for which we can probe optical and mid-infrared flux variations to 1% amplitudes and sub-hour timescales. We present a morphological variability census and then use metrics of periodicity, stochasticity, and symmetry to statistically separate the light curves into seven distinct classes, which we suggest represent different physical processes and geometric effects. We provide distributions of the characteristic timescales and amplitudes and assess the fractional representation within each class. The largest category (>20%) are optical 'dippers' with discrete fading events lasting ∼1-5 days. The degree of correlation between the optical and infrared light curves is positive but weak; notably, the independently assigned optical and infrared morphology classes tend to be different for the same object. Assessment of flux variation behavior with respect to (circum)stellar properties reveals correlations of variability parameters with Hα emission and with effective temperature. Overall, our results point to multiple origins of young star variability, including circumstellar obscuration events, hot spots on the star and/or disk, accretion bursts, and rapid structural changes in the inner disk.
Author Affer, Laura
Barrado, David
Flaccomio, Ettore
Morales-Calderón, María
Findeisen, Krzysztof
Turner, Neal
Cody, Ann Marie
Bouvier, Jèrôme
Holtzman, Jon
Herbst, William
Wolk, Scott
Forbrich, Jan
Carpenter, John
Plavchan, Peter
Allen, Lori
Gillen, Ed
Terebey, Susan
McQuillan, Amy
Calvet, Nuria
Wood, Kenneth
Covey, Kevin
Rebull, Luisa M.
Poppenhaeger, Katja
Micela, Giuseppina
Hillenbrand, Lynne A.
Zwintz, Konstanze
Lillo Box, Jorge
Espaillat, Catherine
Carey, Sean
D'Alessio, Paola
Favata, Fabio
Hora, Joseph
Hartmann, Lee
Vrba, Frederick J.
Günther, Hans Moritz
Song, Inseok
Guimarães, Marcelo Medeiros
Aigrain, Suzanne
Whitney, Barbara
Teixeira, Paula
Gutermuth, Robert
Stauffer, John
Baglin, Annie
Alencar, Silvia H. P.
Marchis, Franck
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BackLink https://hal.science/hal-02549616$$DView record in HAL
https://www.osti.gov/biblio/22340305$$D View this record in Osti.gov
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Snippet We present the Coordinated Synoptic Investigation of NGC 2264, a continuous 30 day multi-wavelength photometric monitoring campaign on more than 1000 young...
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SubjectTerms ACCRETION DISKS
ACCURACY
AMPLITUDES
Astrophysics
ASTROPHYSICS, COSMOLOGY AND ASTRONOMY
BEARINGS
CHARGES
Correlation
CORRELATIONS
DIAGRAMS
DISTRIBUTION
EMISSION
Fading
Flux
Infrared
Origins
PERIODICITY
Physics
PROTOPLANETS
Stars
SYMMETRY
T TAURI STARS
TELESCOPES
VISIBLE RADIATION
WAVELENGTHS
Title CSI 2264: SIMULTANEOUS OPTICAL AND INFRARED LIGHT CURVES OF YOUNG DISK-BEARING STARS IN NGC 2264 WITH CoRoT and SPITZER —EVIDENCE FOR MULTIPLE ORIGINS OF VARIABILITY
URI https://www.proquest.com/docview/1660438613
https://www.proquest.com/docview/1669892796
https://hal.science/hal-02549616
https://www.osti.gov/biblio/22340305
Volume 147
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