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Mode Switching in Two Blue Large Amplitude Pulsators observed by OGLE, KMTNet and DREAMS

Published 16 Sep 2026 in astro-ph.SR | (2609.18300v1)

Abstract: Blue large-amplitude pulsators (BLAPs) are rare, hot, short-period pulsating stars whose rapid oscillations provide a unique probe of stellar interiors and atmospheres. In this paper, we study two short-period BLAPs in the Galactic bulge, OGLE-BLAP-142 (P≈6.6P \approx 6.6 min) and OGLE-BLAP-148 (P≈7.5P \approx 7.5 min), by combining light curves from the OGLE, KMTNet, and DREAMS surveys, spanning 17 years with cadences ranging from minutes to hours to days. We perform Generalized Lomb-Scargle periodogram analyses of their light curves and identify, for each BLAP, three closely spaced pulsation modes separated by ∼1%\sim 1\%. The dominant mode can switch within timescales of order a year, accompanied by a likely blueward color shift (∼0.1\sim 0.1--$0.2$ mag). The yearly period excursions of the resolved mode families imply apparent ∣P˙/P∣|\dot{P}/P| values of order 10<sup>−610<sup>{-6}--10<sup>−4 yr<sup>−110<sup>{-4}\,\mathrm{yr<sup>{-1}}, large enough to mimic or exceed smooth evolutionary period changes. One mode family in OGLE-BLAP-148 shows a coherent decade-long drift at the ∼10<sup>−5 yr<sup>−1\sim10<sup>{-5}\,\mathrm{yr<sup>{-1}} level, but its failure to extrapolate to the earliest and latest epochs suggests a transient mode-family drift rather than secular evolution. Such close-spaced multiple pulsations and mode switching may be common among BLAPs with periods shorter than 10 min, and their physical origin remains unclear.

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