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Anharmonic vibrations in pulsating stars

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2012

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Pandey, Prem Chand
Goswami, Umananda Dev
Bisht, Shuchi

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Indian Journal of Physics. Springer. 2012, 86(9), pp. 849-853. ISSN 0973-1458. eISSN 0974-9845. Available under: doi: 10.1007/s12648-012-0149-4

Zusammenfassung

We have studied the anharmonic vibrations in pulsating stars using the Hamiltonian formulation of Newtonian dynamics. We have considered the spherical and homogeneous stars as simple case which can however put a constraint on the model in a generalized sense. Utilizing the equation of motion, it has been found that the theoretical model investigated in this study could produce the anharmonic nature of pulsations in radial velocity, luminosity and apparent magnitude with respect to time. We could improve the understanding of such anharmonic pulsation at theoretical front in comparison to the already existing models. However, there is still a large discrepancy in between the observed data and calculated values for the known anharmonically pulsating star (viz., δ Cepheid).

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530 Physik

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ISO 690PANDEY, Prem Chand, Umananda Dev GOSWAMI, Heinz DEHNEN, Shuchi BISHT, 2012. Anharmonic vibrations in pulsating stars. In: Indian Journal of Physics. Springer. 2012, 86(9), pp. 849-853. ISSN 0973-1458. eISSN 0974-9845. Available under: doi: 10.1007/s12648-012-0149-4
BibTex
@article{Pandey2012-09Anhar-49351,
  year={2012},
  doi={10.1007/s12648-012-0149-4},
  title={Anharmonic vibrations in pulsating stars},
  number={9},
  volume={86},
  issn={0973-1458},
  journal={Indian Journal of Physics},
  pages={849--853},
  author={Pandey, Prem Chand and Goswami, Umananda Dev and Dehnen, Heinz and Bisht, Shuchi}
}
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    <dcterms:abstract xml:lang="eng">We have studied the anharmonic vibrations in pulsating stars using the Hamiltonian formulation of Newtonian dynamics. We have considered the spherical and homogeneous stars as simple case which can however put a constraint on the model in a generalized sense. Utilizing the equation of motion, it has been found that the theoretical model investigated in this study could produce the anharmonic nature of pulsations in radial velocity, luminosity and apparent magnitude with respect to time. We could improve the understanding of such anharmonic pulsation at theoretical front in comparison to the already existing models. However, there is still a large discrepancy in between the observed data and calculated values for the known anharmonically pulsating star (viz., δ Cepheid).</dcterms:abstract>
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