The evolutionary state of Miras with changing pulsation periods
Stefan Uttenthaler (1,2), Koen Van Stiphout (1,3), Kevin Voet (1),, Hans Van Winckel (1), Sophie Van Eck (4), Alain Jorissen (4), Franz, Kerschbaum (2), Gert Raskin (1), Saskia Prins (1), Wim Pessemier (1),, Christoffel Waelkens (1), Yves Fr\'emat (5), Herman Hensberge (5)

TL;DR
This study investigates Mira variables with changing pulsation periods to determine their evolutionary stage, using spectral analysis of technetium and lithium to identify recent thermal pulses and dredge-up events, revealing diverse evolutionary states.
Contribution
It provides new insights into the evolutionary status of Miras with changing periods by combining spectral evidence of technetium and lithium with pulsation data, clarifying their relation to thermal pulses.
Findings
Five stars show technetium indicating recent thermal pulses.
No clear correlation between period change class and technetium presence.
Some stars are likely in the thermally-pulsing AGB phase, others not.
Abstract
Context: Miras are long-period variables thought to be in the asymptotic giant branch (AGB) phase of evolution. In about one percent of known Miras, the pulsation period is changing. It has been speculated that this changing period is the consequence of a recent thermal pulse in these stars. Aims: We aim to clarify the evolutionary state of these stars, and to determine in particular whether or not they are in the thermally-pulsing (TP-)AGB phase. Methods: One important piece of information that has been neglected so far when determining the evolutionary state is the presence of the radio-active s-process element technetium (Tc). We obtained high-resolution, high signal-to-noise-ratio optical spectra of a dozen prominent Mira variables with changing pulsation period to search for this indicator of TPs and dredge-up. We also use the spectra to measure lithium (Li) abundances.…
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