Abstract
It is known that most stars lose mass through stellar wind. Thermal mass loss is impossible
at photospheric and chromospheric temperatures. Coronal temperature makes the
thermal contribution significantly significant, but additional mechanisms for particle
acceleration from the chromosphere and coronal heating are required, such as radiation
pressure, MHD, anomalous strong ambipolar diffusion, or Coulomb acceleration, which go
beyond the hydrostatic model. Comparison of the mass loss rate in the tails of the
distribution function with actual observed values for increasing main-sequence stars, even
at coronal temperatures, indicates an increasing excess of actual mass loss over the
gravitational limit. All stars exhibiting a persistently high mass loss rate exceeding
gravitational confinement can be classified as nonrelativistic white holes.



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