Double beta decay is a very rare nuclear process and, therefore, experiments intended to detect it must be operated deep underground and in ultra-low background conditions. Long-lived radioisotopes produced by the previous exposure of materials to cosmic rays on the Earth’s surface or even underground can become problematic for the required sensitivity. Here, the studies developed to quantify and reduce the activation yields in detectors and materials used in the set-up of these experiments will be reviewed, considering target materials like germanium, tellurium and xenon together with other ones commonly used like copper, lead, stainless steel or argon. Calculations following very different approaches and measurements from irradiation expe...
New results are presented of a search for double beta decay of Te isotopes carried out, using the bo...
The LUCIFER project aims at deploying the first array of enriched scintillating bolometers for the i...
Natural radioactivity represents one of the main backgrounds in the search for neutrinoless double b...
Double beta decay is a very rare nuclear process and, therefore, experiments intended to detect it m...
International audienceThe search of the neutrinoless double beta decay is currently the only way to ...
The “Neutrino Experiment with a Xenon Time-Projection Chamber” (NEXT) is intended to investigate the...
The production of radioactive isotopes in materials due to exposure to cosmic rays can become an haz...
The first activities of the Canfranc Underground Laboratory (“Laboratorio Subterráneo de Canfanc”, L...
AbstractThe review of modern experiments on search and studying of double beta decay processes is do...
Activation of materials is known to cause background events in underground experiments that may affe...
The theoretical and experimental issues relevant to neutrinoless double beta decay are reviewed. The...
This paper introduces the neutrinoless double-beta decay the rarest nuclear weak process and descr...
Active background reduction in high resolution calorimeters is a promising approach to achieve ultim...
We evaluate the cosmogenic production rates in some materials that are commonly used as targets and ...
Abstract Neutrinoless double beta decay (ββ0ν) is a hypothetical, very slow nuclear transition in wh...
New results are presented of a search for double beta decay of Te isotopes carried out, using the bo...
The LUCIFER project aims at deploying the first array of enriched scintillating bolometers for the i...
Natural radioactivity represents one of the main backgrounds in the search for neutrinoless double b...
Double beta decay is a very rare nuclear process and, therefore, experiments intended to detect it m...
International audienceThe search of the neutrinoless double beta decay is currently the only way to ...
The “Neutrino Experiment with a Xenon Time-Projection Chamber” (NEXT) is intended to investigate the...
The production of radioactive isotopes in materials due to exposure to cosmic rays can become an haz...
The first activities of the Canfranc Underground Laboratory (“Laboratorio Subterráneo de Canfanc”, L...
AbstractThe review of modern experiments on search and studying of double beta decay processes is do...
Activation of materials is known to cause background events in underground experiments that may affe...
The theoretical and experimental issues relevant to neutrinoless double beta decay are reviewed. The...
This paper introduces the neutrinoless double-beta decay the rarest nuclear weak process and descr...
Active background reduction in high resolution calorimeters is a promising approach to achieve ultim...
We evaluate the cosmogenic production rates in some materials that are commonly used as targets and ...
Abstract Neutrinoless double beta decay (ββ0ν) is a hypothetical, very slow nuclear transition in wh...
New results are presented of a search for double beta decay of Te isotopes carried out, using the bo...
The LUCIFER project aims at deploying the first array of enriched scintillating bolometers for the i...
Natural radioactivity represents one of the main backgrounds in the search for neutrinoless double b...