© 2022 Elsevier B.V.AMoRE-II is the second phase of the Advanced Molybdenum-based Rare process Experiment aiming to search for the neutrino-less double beta decay of 100Mo isotopes using ∼200 kg of molybdenum-containing cryogenic detectors. The AMoRE-II needs to keep the background level below 10−5 counts/keV/kg/year with various methods to maximize the sensitivity. One of the methods is to have the experiment be carried out deep underground free from the cosmic ray backgrounds. The AMoRE-II will run at Yemilab with ∼1,000 m depth. However, even in such a deep underground environment, there are still survived cosmic muons, which can affect the measurement and should be excluded as much as possible. A muon veto detector is necessary to rejec...
A Cosmic Muon Veto Detector (CMVD) is being built around the mini-Iron Calorimeter (mini-ICAL) detec...
In the last years, the demand for increasing the control security at borders and ports has lead to t...
The Mu2e experiment at Fermilab aims to search for the SM forbidden μ− → e− conversion in Al muonic ...
AMoRE-II is the second phase of the Advanced Molybdenum-based Rare process Experiment aiming to sear...
International audienceThe NUCLEUS experiment aims at measuring the coherent elastic scattering of nu...
The existing muon detectors for high energy physics (HEP) experiments are mainly made of gas chamber...
International audienceRare-event search experiments located on-surface, such as short-baseline react...
International audienceThe Nucleus experiment aims to measure coherent elastic neutrino nucleus scatt...
The NUCLEUS experiment aims to measure coherent elastic neutrino nucleus scattering of reactor anti-...
This work presents the design and performance study of compact strips of plastic scintillator with W...
The NUCLEUS experiment aims at measuring the coherent elastic scattering of nuclear reactor antineut...
The goal of the Advanced Mo-based Rare process Experiment (AMoRE) is to search for the neutrinoless ...
This paper describes the characterization of commercially available plastic scintillation detectors ...
The AMoRE-II is the next phase of the AMoRE searching for the neutrinoless double beta decay of 100M...
The existing muon detectors for high-energy physics experiments are mainly made of gas chambers such...
A Cosmic Muon Veto Detector (CMVD) is being built around the mini-Iron Calorimeter (mini-ICAL) detec...
In the last years, the demand for increasing the control security at borders and ports has lead to t...
The Mu2e experiment at Fermilab aims to search for the SM forbidden μ− → e− conversion in Al muonic ...
AMoRE-II is the second phase of the Advanced Molybdenum-based Rare process Experiment aiming to sear...
International audienceThe NUCLEUS experiment aims at measuring the coherent elastic scattering of nu...
The existing muon detectors for high energy physics (HEP) experiments are mainly made of gas chamber...
International audienceRare-event search experiments located on-surface, such as short-baseline react...
International audienceThe Nucleus experiment aims to measure coherent elastic neutrino nucleus scatt...
The NUCLEUS experiment aims to measure coherent elastic neutrino nucleus scattering of reactor anti-...
This work presents the design and performance study of compact strips of plastic scintillator with W...
The NUCLEUS experiment aims at measuring the coherent elastic scattering of nuclear reactor antineut...
The goal of the Advanced Mo-based Rare process Experiment (AMoRE) is to search for the neutrinoless ...
This paper describes the characterization of commercially available plastic scintillation detectors ...
The AMoRE-II is the next phase of the AMoRE searching for the neutrinoless double beta decay of 100M...
The existing muon detectors for high-energy physics experiments are mainly made of gas chambers such...
A Cosmic Muon Veto Detector (CMVD) is being built around the mini-Iron Calorimeter (mini-ICAL) detec...
In the last years, the demand for increasing the control security at borders and ports has lead to t...
The Mu2e experiment at Fermilab aims to search for the SM forbidden μ− → e− conversion in Al muonic ...