First results on double beta decay modes of Cd, Te and Zn isotopes with the COBRA experiment
arXiv:0707.2756 · doi:10.1103/PhysRevC.76.025501
Abstract
Four 1cm^3 CdZnTe semiconductor detectors were operated in the Gran Sasso National Laboratory to explore the feasibility of such devices for double beta decay searches as proposed for the COBRA experiment. The research involved background studies accompanied by measurements of energy resolution performed at the surface. Energy resolutions sufficient to reduce the contribution of two-neutrino double beta decay events to a negligible level for a large scale experiment have already been achieved and further improvements are expected. Using activity measurements of contaminants in all construction materials a background model was developed with the help of Monte Carlo simulations and major background sources were identified. A total exposure of 4.34 kg.days of underground data has been accumulated allowing a search for neutrinoless double beta decay modes of seven isotopes found in CdZnTe. Half-life limits (90% C.L.) are presented for decays to ground and excited states. Four improved lower limits have been obtained, including zero neutrino double electron capture transitions of Zn64 and Te120 to the ground state, which are 1.19*10^{17} years and 2.68*10^{15} years respectively.
8 pages, 7 figures
References in corpus (1)
Cited by in corpus (10)
- Disassembling the Nuclear Matrix Elements of the Neutrinoless double beta Decay
- Neutrinoless Double-Beta Decay: a Probe of Physics Beyond the Standard Model
- Double-beta decay Q values of 130Te, 128Te, and 120Te
- Neutrinoless Double-Electron Capture
- Experimental study of double beta decay modes using a CdZnTe detector array
- An Investigation into the 113-Cd Beta Decay Spectrum using a CdZnTe Array
- Energy resolution improvement in room-temperature CZT detectors
- An Investigation on Cooling of CZT Co-Planar Grid Detectors
- Leptogenesis in an extended seesaw model with symmetry
- CdZnTe room-temperature semiconductor operation in liquid scintillator