Identifying 850 delta Scuti pulsators in a narrow Gaia colour range with TESS 10-minute full-frame images

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Read, Amelie K., Bedding, Timothy R., Mani, Prasad, Montet, Benjamin T., Crawford, Courtney, Hey, Daniel R., Li, Yaguang, Murphy, Simon J., Pedersen, May Gade, Kruger, Joachim
Formato: Preprint
Publicado: 2024
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866911451227095040
author Read, Amelie K.
Bedding, Timothy R.
Mani, Prasad
Montet, Benjamin T.
Crawford, Courtney
Hey, Daniel R.
Li, Yaguang
Murphy, Simon J.
Pedersen, May Gade
Kruger, Joachim
author_facet Read, Amelie K.
Bedding, Timothy R.
Mani, Prasad
Montet, Benjamin T.
Crawford, Courtney
Hey, Daniel R.
Li, Yaguang
Murphy, Simon J.
Pedersen, May Gade
Kruger, Joachim
contents We use TESS 10-minute Full Frame Images (Sectors 27-55) to study a sample of 1708 stars within 500 pc of the Sun that lie in a narrow colour range in the centre of the delta Scuti instability strip (0.29 < BP-RP < 0.31). Based on the Fourier amplitude spectra, we identify 848 delta Scuti stars, as well as 47 eclipsing or contact binaries. The strongest pulsation modes of some delta Scuti stars fall on the period-luminosity relation of the fundamental radial mode but many correspond to overtones that are approximately a factor of two higher in frequency. Many of the low-luminosity delta Scuti stars show a series of high-frequency modes with very regular spacings. The fraction of stars in our sample that show delta Scuti pulsations is about 70% for the brightest stars (G<8), consistent with results from Kepler. However, the fraction drops to about 45% for fainter stars and we find that a single sector of TESS data only detects the lowest-amplitude delta Scuti pulsations (around 50 ppm) in stars down to about G=9. Finally, we have found four new high-frequency delta Scuti stars with very regular mode patterns, and have detected pulsations in lambda Mus that make it the fourth-brightest delta Scuti in the sky (G=3.63). Overall, these results confirm the power of TESS and Gaia for studying pulsating stars.
format Preprint
id arxiv_https___arxiv_org_abs_2401_07413
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Identifying 850 delta Scuti pulsators in a narrow Gaia colour range with TESS 10-minute full-frame images
Read, Amelie K.
Bedding, Timothy R.
Mani, Prasad
Montet, Benjamin T.
Crawford, Courtney
Hey, Daniel R.
Li, Yaguang
Murphy, Simon J.
Pedersen, May Gade
Kruger, Joachim
Solar and Stellar Astrophysics
We use TESS 10-minute Full Frame Images (Sectors 27-55) to study a sample of 1708 stars within 500 pc of the Sun that lie in a narrow colour range in the centre of the delta Scuti instability strip (0.29 < BP-RP < 0.31). Based on the Fourier amplitude spectra, we identify 848 delta Scuti stars, as well as 47 eclipsing or contact binaries. The strongest pulsation modes of some delta Scuti stars fall on the period-luminosity relation of the fundamental radial mode but many correspond to overtones that are approximately a factor of two higher in frequency. Many of the low-luminosity delta Scuti stars show a series of high-frequency modes with very regular spacings. The fraction of stars in our sample that show delta Scuti pulsations is about 70% for the brightest stars (G<8), consistent with results from Kepler. However, the fraction drops to about 45% for fainter stars and we find that a single sector of TESS data only detects the lowest-amplitude delta Scuti pulsations (around 50 ppm) in stars down to about G=9. Finally, we have found four new high-frequency delta Scuti stars with very regular mode patterns, and have detected pulsations in lambda Mus that make it the fourth-brightest delta Scuti in the sky (G=3.63). Overall, these results confirm the power of TESS and Gaia for studying pulsating stars.
title Identifying 850 delta Scuti pulsators in a narrow Gaia colour range with TESS 10-minute full-frame images
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2401.07413