This article describes the setup and performance of the near and far detectors in the Double Chooz experiment. The electron antineutrinos of the Chooz nuclear power plant were measured in two identically designed detectors with different average baselines of about 400 m and 1050 m from the two reactor cores. Over many years of data taking the neutrino signals were extracted from interactions in the detectors with the goal of measuring a fundamental parameter in the context of neutrino oscillation, the mixing angle {\theta}13. The central part of the Double Chooz detectors was a main detector comprising four cylindrical volumes filled with organic liquids. From the inside towards the outside there were volumes containing gadolinium-loaded sc...
The Double Chooz experiment aims at accurately measuring the value of the leptonic mixing angle θ₁₃....
The Double Chooz experiment uses antineutrinos emitted from the Chooz nuclear power plant (France) t...
The Double Chooz experiment measures the neutrino mixing angle θ13 by detecting reactor ν¯e via inve...
This article describes the setup and performance of the near and far detectors in the Double Chooz e...
The Double Chooz experiment has observed 8,249 candidate electron antineutrino events in 227.93 live...
The Double Chooz experiment presents improved measurements of the neutrino mixing angle $\theta_{13}...
Double Chooz is unique among modern reactor-based neutrino experiments studying ν¯e disappearance in...
We describe a muon track reconstruction algorithm for the reactor anti-neutrino experiment Double Ch...
Using the Double Chooz detector, designed to measure the neutrino mixing angle θ[subscript 13], the ...
The establishment of the neutrino oscillations phenomenon as a solution to both solar and atmospheri...
The Double Chooz experiment has determined the value of the neutrino oscillation parameter θ13 from ...
The Double Chooz experiment aims to measure the θ₁₃ mixing angle through the disappearance—induced b...
The Double Chooz experiment at the Chooz nuclear power station is designed to measure the last undet...
AbstractThe Double Chooz reactor antineutrino experiment aims for a precision measurement of the neu...
The Double Chooz experiment aims at accurately measuring the value of the leptonic mixing angle θ₁₃....
The Double Chooz experiment uses antineutrinos emitted from the Chooz nuclear power plant (France) t...
The Double Chooz experiment measures the neutrino mixing angle θ13 by detecting reactor ν¯e via inve...
This article describes the setup and performance of the near and far detectors in the Double Chooz e...
The Double Chooz experiment has observed 8,249 candidate electron antineutrino events in 227.93 live...
The Double Chooz experiment presents improved measurements of the neutrino mixing angle $\theta_{13}...
Double Chooz is unique among modern reactor-based neutrino experiments studying ν¯e disappearance in...
We describe a muon track reconstruction algorithm for the reactor anti-neutrino experiment Double Ch...
Using the Double Chooz detector, designed to measure the neutrino mixing angle θ[subscript 13], the ...
The establishment of the neutrino oscillations phenomenon as a solution to both solar and atmospheri...
The Double Chooz experiment has determined the value of the neutrino oscillation parameter θ13 from ...
The Double Chooz experiment aims to measure the θ₁₃ mixing angle through the disappearance—induced b...
The Double Chooz experiment at the Chooz nuclear power station is designed to measure the last undet...
AbstractThe Double Chooz reactor antineutrino experiment aims for a precision measurement of the neu...
The Double Chooz experiment aims at accurately measuring the value of the leptonic mixing angle θ₁₃....
The Double Chooz experiment uses antineutrinos emitted from the Chooz nuclear power plant (France) t...
The Double Chooz experiment measures the neutrino mixing angle θ13 by detecting reactor ν¯e via inve...