Abstract
We employ an Y/Be photoneutron source to derive the quenching factor for neutron-induced nuclear recoils in germanium, probing recoil energies from a few hundred eV to 8.5keV. A comprehensive Monte Carlo simulation of our setup is compared to experimental data employing a Lindhard model with a free electronic energy loss and an adiabatic correction for sub-keV nuclear recoils. The best fit obtained using a Monte Carlo Markov Chain (MCMC) ensemble sampler is in good agreement with previous measurements, confirming the adequacy of the Lindhard model to describe the stopping of few-keV ions in germanium crystals at a temperature of 77 K. This value of corresponds to a quenching factor of 13.7 % to 25.3 % for nuclear recoil energies between 0.3 keV and 8.5 keV, respectively.
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