Characterizing bright delta Scuti pulsators using TESS light curves:II. Pulsation amplitude and energy distributions
astro-ph.SR
Submitted: 2026-09-14
Updated: 2026-09-14
Comments: Accepted for publication in MNRAS
License: http://creativecommons.org/licenses/by/4.0/
The gist: Pulsations in δ Scuti stars exhibit a wide range of excited frequencies and amplitudes, but the underlying principles governing their amplitude distribution remain unclear.
Terminology
Abstract
Pulsations in δ Scuti stars exhibit a wide range of excited frequencies and amplitudes, but the underlying principles governing their amplitude distribution remain unclear. We revisit this problem using a global, energy-based perspective. For a complete sample of 3200 bright δ Scuti stars observed by TESS, integrated power spectral density (PSD) of the Fourier spectrum allows us to measure the overall pulsation signal. From this, we derive a proxy for the total pulsation energy. We uncover a bimodality among higher-frequency delta Scuti stars in their integrated PSD, possibly suggesting the presence of two distinct pulsation regimes. In addition, we identify an apparent upper limit to the total pulsation energy, indicating a constrained energy budget for these pulsations. This feature is not evident when stars are characterized solely by their dominant mode amplitude.
Sources
- The PL diagram for $\delta$ Sct stars: back in business as distance estimators
- Investigating the Period-Luminosity Relations of delta Scuti Stars: A Pathway to Distance and 3-D Dust Map Inference
- Period--Luminosity Relations for Double-mode $\delta$ Sct Stars
- What CoRoT tells us about {\delta} Scuti stars existence of a regular pattern and seismic indices to characterize stars
- Machine learning for understanding pulsating stars I: the non-linear phenomenon in {\delta} Scuti stars
Related papers
- HXI-DLA2: A Physics-Constrained Deep Learning Algorithm for the ASO-S Hard X-ray Imager
- Effect of Neutron Star Jets on Common Envelope Evolution
- Constraining the origin of magnetic white dwarfs
- JW-FD: A 15-Year Multimodal Dataset for Solar Flare Forecasting
- Phlegethon: a fully compressible magnetohydrodynamic code for simulations in stellar astrophysics
- Can MHD Oscillations Modulate Quasi-Periodic Plasma Release from Coronal Streamers?