2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/202803The formation and quantum mechanical evaporation of black holes in two spacetime dimensions can be studied using effective classical field equations, recently introduced by Callan {\it et al.} We find that gravitational collapse always leads to a curvature singularity, according to these equations, and that the region where the quantum corrections introduced by Callan {\it et al.} could be expected to dominate is on the unphysical side of the singularity. The model can be successfully applied to study the back-reaction of Hawking radiation on the geometry of large mass black holes, but the description breaks down before the evaporation is complete.10 pagesHigh Energy Physics - TheoryBlack Hole Evaporation in 1+1 Dimensionstext