English

Toward Single Electron Resolution Phonon Mediated Ionization Detectors

Instrumentation and Detectors 2015-10-06 v1 High Energy Physics - Experiment

Abstract

Experiments seeking to detect rare event interactions such as dark matter or coherent elastic neutrino nucleus scattering are striving for large mass detectors with very low detection threshold. Using Neganov-Luke phonon amplification effect, the Cryogenic Dark Matter Search (CDMS) experiment is reaching unprecedented RMS resolutions of ~ 14 eVee_{ee} . CDMSlite is currently the most sensitive experiment to WIMPs of mass \sim5 GeV/c2^{2} but is limited in achieving higher phonon gains due to an early onset of leakage current into Ge crystals. The contact interface geometry is particularly weak for blocking hole injection from the metal, and thus a new design is demonstrated that allows high voltage bias via vacuum separated electrode. With an increased bias voltage and a ×\times 2 Luke phonon gain, world best RMS resolution of sigma \sim7 eVee_{ee} for 0.25 kg (d=75 mm, h=1 cm) Ge detectors was achieved. Since the leakage current is a function of the field and the phonon gain is a function of the applied voltage, appropriately robust interface blocking material combined with thicker substrate (25 mm) will reach a resolution of \sim2.8 eVee_{ee}. In order to achieve better resolution of \sim eV, we are investigating a layer of insulator between the phonon readout surface and the semiconductor crystals.

Keywords

Cite

@article{arxiv.1510.00999,
  title  = {Toward Single Electron Resolution Phonon Mediated Ionization Detectors},
  author = {Nader Mirabolfathi and H. Rusty Harris and Rupak Mahapatra and Kyle Sundqvist and Andrew Jastram and Bruno Serfass and Dana Faiez and Bernard Sadoulet},
  journal= {arXiv preprint arXiv:1510.00999},
  year   = {2015}
}
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