Abstract. There is a fairly tight correlation between the pulsation periods and effective temperatures of ZZ Ceti stars (cooler stars have longer periods). This seems to fit the the-oretical picture, where driving occurs in the partial ionization zone, which lies deeper and deeper within the star as it cools. It is reasonable to assume that the pulsation periods should be related to the thermal timescale in the region where driving occurs. As that region sinks further down below the surface, that thermal timescale increases. Assuming this connection, the pulsation periods could provide an additional way to determine effective temperatures, independent of spectroscopy. We explore this idea and find that in practice, things are not so simple....
We analyze the stability criteria by convection in ZZ ceti stars when the thermal relaxation times a...
Context. ZZ Ceti stars are pulsating white dwarfs with a carbon-oxygen core build up during the core...
Context. ZZ Ceti stars are pulsating white dwarfs with a carbon-oxygen core build up during the core...
There is a fairly tight correlation between the pulsation periods and effective temperatures of ZZ C...
The mean pulsation period of ZZ Ceti stars increases with decreasing effective temperature as we tra...
The light curves of ZZ Ceti stars exhibit variations of luminosity with typical intervals between su...
We present the observed pulsation spectra of all known non-interacting ZZ Ceti stars (hydrogen atmos...
We present the observed pulsation spectra of all known noninteracting ZZ Ceti stars (hydrogen atmosp...
Context. We have observed again two stars inside the ZZ Ceti instability strip that were previously ...
We present the observed pulsation spectra of all known non-interacting ZZ Ceti stars (hydrogen atmos...
Aims. The determination of the location of the theoretical ZZ Ceti instability strip in the log g − ...
We report our analysis of the stability of pulsation periods in the DAV star (pulsating hydrogen atm...
We report our analysis of the stability of pulsation periods in the DAV star (pulsating hydrogen atm...
Context. The thermally pulsing phase on the asymptotic giant branch (TP-AGB) is the last nuclear bur...
The location of the red edge of the ZZ Ceti instability strip is defined observationally as being th...
We analyze the stability criteria by convection in ZZ ceti stars when the thermal relaxation times a...
Context. ZZ Ceti stars are pulsating white dwarfs with a carbon-oxygen core build up during the core...
Context. ZZ Ceti stars are pulsating white dwarfs with a carbon-oxygen core build up during the core...
There is a fairly tight correlation between the pulsation periods and effective temperatures of ZZ C...
The mean pulsation period of ZZ Ceti stars increases with decreasing effective temperature as we tra...
The light curves of ZZ Ceti stars exhibit variations of luminosity with typical intervals between su...
We present the observed pulsation spectra of all known non-interacting ZZ Ceti stars (hydrogen atmos...
We present the observed pulsation spectra of all known noninteracting ZZ Ceti stars (hydrogen atmosp...
Context. We have observed again two stars inside the ZZ Ceti instability strip that were previously ...
We present the observed pulsation spectra of all known non-interacting ZZ Ceti stars (hydrogen atmos...
Aims. The determination of the location of the theoretical ZZ Ceti instability strip in the log g − ...
We report our analysis of the stability of pulsation periods in the DAV star (pulsating hydrogen atm...
We report our analysis of the stability of pulsation periods in the DAV star (pulsating hydrogen atm...
Context. The thermally pulsing phase on the asymptotic giant branch (TP-AGB) is the last nuclear bur...
The location of the red edge of the ZZ Ceti instability strip is defined observationally as being th...
We analyze the stability criteria by convection in ZZ ceti stars when the thermal relaxation times a...
Context. ZZ Ceti stars are pulsating white dwarfs with a carbon-oxygen core build up during the core...
Context. ZZ Ceti stars are pulsating white dwarfs with a carbon-oxygen core build up during the core...