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Abstract:
In this thesis we calculate the differential decay rate of 0νββ in the minimal
left-right symmetric model (mLRSM) using the low energy effective approach.
We study the fundamental model building of the mLRSM from the literature
and derive the mass scales of the involving particles. These masses as well as
the couplings of the model play a crucial role in the 0νββ process for amplitude
derivations. We give the amplitude of each diagrams and calculate the differential
decay rate. The derivation procedure from the model to the differential decay
rate is helpful for students to understand the relation between theoretical models
and experiments, and it can be duplicated in studying different models. In the
end, we show the differential decay rate spectra, angular correlation spectra, and
the half-life expressions.