TY - JOUR
T1 - Variational approach for rotating-stellar evolution in Lagrange scheme
AU - Yasutake, Nobutoshi
AU - Yamada, Shoichi
N1 - Publisher Copyright:
Copyright © International Astronomical Union 2015.
PY - 2014
Y1 - 2014
N2 - We have developed an entirely new formulation to obtain self-gravitating, axisymmetric configurations in permanent rotation. It is based on the Lagrangian variational principle and, as a consequence, will allow us to apply it to stellar evolution calculations rather easily. We adopt a Monte Carlo technique, which is analogous to those employed in other fields, e.g. nuclear physics, in minimizing the energy functional. We also present the analogies between the study on rotating stellar configurations and the one on deformed nuclei. Possible applications are not limited to main sequence stars but will be extended to e.g. compact stars, proto-stars and planets. We believe that our formulation will be a major break-through then.
AB - We have developed an entirely new formulation to obtain self-gravitating, axisymmetric configurations in permanent rotation. It is based on the Lagrangian variational principle and, as a consequence, will allow us to apply it to stellar evolution calculations rather easily. We adopt a Monte Carlo technique, which is analogous to those employed in other fields, e.g. nuclear physics, in minimizing the energy functional. We also present the analogies between the study on rotating stellar configurations and the one on deformed nuclei. Possible applications are not limited to main sequence stars but will be extended to e.g. compact stars, proto-stars and planets. We believe that our formulation will be a major break-through then.
KW - rotation - stars: evolution - stars: protostars
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U2 - 10.1017/S1743921314006620
DO - 10.1017/S1743921314006620
M3 - Article
AN - SCOPUS:84921447957
SN - 1743-9213
VL - 9
SP - 150
EP - 151
JO - Proceedings of the International Astronomical Union
JF - Proceedings of the International Astronomical Union
ER -