activity
20182020
collaborators

12 papers

physics.ins-det2020

Demonstration of background rejection using deep convolutional neural networks in the NEXT experiment

NEXT Collaboration, M. Kekic, C. Adams +88

Convolutional neural networks (CNNs) are widely used state-of-the-art computer vision tools that are becoming increasingly popular in high energy physics. In this paper, we attempt…

hep-ex2020

Sensitivity of the NEXT experiment to Xe-124 double electron capture

G. Martínez-Lema, M. Martínez-Vara, M. Sorel +88

Double electron capture by proton-rich nuclei is a second-order nuclear process analogous to double beta decay. Despite their similarities, the decay signature is quite different,…

physics.ins-det2020

Sensitivity of a tonne-scale NEXT detector for neutrinoless double beta decay searches

NEXT Collaboration, C. Adams, V. Álvarez +96

The Neutrino Experiment with a Xenon TPC (NEXT) searches for the neutrinoless double-beta decay of Xe-136 using high-pressure xenon gas TPCs with electroluminescent amplification.…

physics.ins-det2020

Mitigation of Backgrounds from Cosmogenic Xe in Xenon Gas Experiments using He Neutron Capture

L. Rogers, B. J. P. Jones, A. Laing +89

\Xe{136} is used as the target medium for many experiments searching for \bbnonu. Despite underground operation, cosmic muons that reach the laboratory can produce spallation neutr…

physics.ins-det2019

Evaluation of Gadolinium's Action on Water Cherenkov Detector Systems with EGADS

Ll. Marti, M. Ikeda, Y. Kato +65

Used for both proton decay searches and neutrino physics, large water Cherenkov (WC) detectors have been very successful tools in particle physics. They are notable for their large…

physics.ins-det2019

Low-diffusion Xe-He gas mixtures for rare-event detection: Electroluminescence Yield

A. F. M. Fernandes, C. A. O. Henriques, R. D. P. Mano +88

High pressure xenon Time Projection Chambers (TPC) based on secondary scintillation (electroluminescence) signal amplification are being proposed for rare event detection such as d…