Pulsations in hydrogen burning low-mass helium white dwarfs

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Abstract

Helium core white dwarfs (WDs) with mass M ≲ 0.20 M⊙ undergo several Gyr of stable hydrogen burning as they evolve. We show that in a certain range of WD and hydrogen envelope masses, these WDs may exhibit g-mode pulsations similar to their passively cooling, more massive carbon/oxygen core counterparts, the ZZ Cetis. Our models with stably burning hydrogen envelopes on helium cores yield g-mode periods and period spacings longer than the canonical ZZ Cetis by nearly a factor of 2. We show that core composition and structure can be probed using seismology since the g-mode eigenfunctions predominantly reside in the helium core. Though we have not carried out a fully nonadiabatic stability analysis, the scaling of the thermal time in the convective zone with surface gravity highlights several low-mass helium WDs that should be observed in search of pulsations: NLTT 11748, SDSS J0822+2753, and the companion to PSR J1012+5307. Seismological studies of these He core WDs may prove especially fruitful, as their luminosity is related (via stable hydrogen burning) to the hydrogen envelope mass, which eliminates one model parameter.

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Steinfadt, J. D. R., Bildsten, L., & Arras, P. (2010). Pulsations in hydrogen burning low-mass helium white dwarfs. Astrophysical Journal, 718(1), 441–445. https://doi.org/10.1088/0004-637X/718/1/441

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