Abstract

Incorporating effects of quantum gravity into the tunnelling method, we adopt the modified Dirac equation to study the tunnelling radiation of fermions in the Taub-NUT black hole. The corrected Hawking temperature is lower than the original temperature. The correction value is affected by the energy, mass and angular momentum of the emitted fermion. The quantum gravity correction slows down the increase of the temperature, which leads to the remnants left during the evaporation.

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