Abstract
The equation obtained earlier by the authors from a starting model Hamiltonian for the thermal
conductivity of solids under conditions of laser cooling has been converted to a form that
contains on its right-hand side an expression for the load power and the removed power. Numerical
and analytical solutions are presented for this equation under conditions far from saturation.
They give the time-dependent temperature distribution inside a sample for laser cooling of optical
fibers and extended crystals.
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