AbstractThe AMoRE (Advanced Mo-based Rare process Experiment) collaboration is going to use calcium molybdate, 40Ca100MoO4 (CMO), crystal scintillators enriched in 100Mo and depleted in 48Ca to search for neutrinoless double-beta (0νββ) decay of 100Mo using a technique of cryogenic scintillating bolometers at the underground laboratory in Korea. The collaboration is going to utilize metallic magnetic calorimeters (MMC) as temperature sensors both in heat and light channels of CMO detectors operated at milli-Kelvin temperature. Application of relatively fast MMC sensors provides excellent energy resolution, powerful discrimination of internal alpha particles, effective pulse-shape discrimination of randomly coinciding events of two-neutrino ...
This paper reports on the development of a technology involving 100Mo -enriched scintillating bolome...
This paper reports on the development of a technology involving$^{100}\hbox {Mo}$ -enriched scintill...
The LUMINEU project, funded by ANR in France, envisages a high-sensitivity search for neutrinoless d...
AbstractThe AMoRE (Advanced Mo-based Rare process Experiment) collaboration is going to use calcium ...
The advanced molybdenum-based rare process experiment (AMoRE) aims to search for neutrinoless double...
The goal of the Advanced Mo-based Rare process Experiment (AMoRE) is to search for the neutrinoless ...
AMoRE is an experiment to search for the neutrinoless double beta decay using Mo-100 based scintilla...
The AMoRE(Advanced Mo based Rare process Experiment) collaboration intends to find neutrinoless doub...
We developed a cryogenic phonon-scintillation detector to search for 0νββ decay of 100Mo. The detect...
Advanced Molybdenum-based Rare process Experiment (AMoRE) searching neutrinoless double-beta (0 nu b...
A calcium molybdate (CaMoO4) crystal scintillator, with molybdenum enriched in 100Mo and calcium dep...
AMoRE is an international project to search for the neutrinoless double beta decay of $^{100}$Mo usi...
Metallic magnetic calorimeters (MMCs) are highly sensitive temperature sensors that operate at milli...
The LUMINEU program aims at performing a pilot experiment on 0ν2β decay of 100 Mo using radiopure Zn...
The first phase of the Advanced Mo-based Rare process Experiment (AMoRE-I), an experimental search f...
This paper reports on the development of a technology involving 100Mo -enriched scintillating bolome...
This paper reports on the development of a technology involving$^{100}\hbox {Mo}$ -enriched scintill...
The LUMINEU project, funded by ANR in France, envisages a high-sensitivity search for neutrinoless d...
AbstractThe AMoRE (Advanced Mo-based Rare process Experiment) collaboration is going to use calcium ...
The advanced molybdenum-based rare process experiment (AMoRE) aims to search for neutrinoless double...
The goal of the Advanced Mo-based Rare process Experiment (AMoRE) is to search for the neutrinoless ...
AMoRE is an experiment to search for the neutrinoless double beta decay using Mo-100 based scintilla...
The AMoRE(Advanced Mo based Rare process Experiment) collaboration intends to find neutrinoless doub...
We developed a cryogenic phonon-scintillation detector to search for 0νββ decay of 100Mo. The detect...
Advanced Molybdenum-based Rare process Experiment (AMoRE) searching neutrinoless double-beta (0 nu b...
A calcium molybdate (CaMoO4) crystal scintillator, with molybdenum enriched in 100Mo and calcium dep...
AMoRE is an international project to search for the neutrinoless double beta decay of $^{100}$Mo usi...
Metallic magnetic calorimeters (MMCs) are highly sensitive temperature sensors that operate at milli...
The LUMINEU program aims at performing a pilot experiment on 0ν2β decay of 100 Mo using radiopure Zn...
The first phase of the Advanced Mo-based Rare process Experiment (AMoRE-I), an experimental search f...
This paper reports on the development of a technology involving 100Mo -enriched scintillating bolome...
This paper reports on the development of a technology involving$^{100}\hbox {Mo}$ -enriched scintill...
The LUMINEU project, funded by ANR in France, envisages a high-sensitivity search for neutrinoless d...