The Daya Bay Reactor Neutrino Experiment uses an array of eight underground detectors to study antineutrinos from six reactor cores with different baselines. Since the start of data-taking from late 2011, Daya Bay has collected the largest sample of reactor antineutrino events to date, and has made the most precise measurement of the neutrino oscillation parameters sin22θ13 and Δm2ee. Using the data from the four detectors in the near experimental halls, Daya Bay has made a high statistics measurement of the absolute reactor antineutrino flux and spectrum. In this paper we will present this measurement and its comparison to predictions based on different flux models
The Daya Bay reactor antineutrino experiment is designed to measure the last unknown neutrino mixing...
A reactor-neutrino experiment, Daya Bay, has been proposed to determine the least-known neutrino mix...
The poster presents the latest results of the reactor antineutrino flux and spectrum at Daya Bay. Th...
A new measurement of the reactor antineutrino flux and energy spectrum by the Daya Bay reactor neutr...
A new measurement of the reactor antineutrino flux and energy spectrum by the Daya Bay reactor neutr...
AbstractElectron antineutrinos from six 2.9 GWth reactors are detected with six detectors deployed i...
This Letter reports a measurement of the flux and energy spectrum of electron antineutrinos from six...
The antineutrino flux and spectrum from the reactors at Daya Bay are monitored by the near detectors...
This Letter reports a measurement of the flux and energy spectrum of electron antineutrinos from six...
We report a new measurement of electron antineutrino disappearance using the fully constructed Daya ...
The Daya Bay experiment was the first to report simultaneous measurements of reactor antineutrinos a...
The Daya Bay reactor antineutrino experiment is designed to make a precision measurement of the neut...
The Daya Bay reactor antineutrino experiment is designed to make a precision measurement of the neut...
The Daya Bay experiment is designed to precisely measure the reactor antineutrino oscillation at a b...
The Daya Bay Reactor Neutrino Experiment consists of eight functionally identical detectors placed u...
The Daya Bay reactor antineutrino experiment is designed to measure the last unknown neutrino mixing...
A reactor-neutrino experiment, Daya Bay, has been proposed to determine the least-known neutrino mix...
The poster presents the latest results of the reactor antineutrino flux and spectrum at Daya Bay. Th...
A new measurement of the reactor antineutrino flux and energy spectrum by the Daya Bay reactor neutr...
A new measurement of the reactor antineutrino flux and energy spectrum by the Daya Bay reactor neutr...
AbstractElectron antineutrinos from six 2.9 GWth reactors are detected with six detectors deployed i...
This Letter reports a measurement of the flux and energy spectrum of electron antineutrinos from six...
The antineutrino flux and spectrum from the reactors at Daya Bay are monitored by the near detectors...
This Letter reports a measurement of the flux and energy spectrum of electron antineutrinos from six...
We report a new measurement of electron antineutrino disappearance using the fully constructed Daya ...
The Daya Bay experiment was the first to report simultaneous measurements of reactor antineutrinos a...
The Daya Bay reactor antineutrino experiment is designed to make a precision measurement of the neut...
The Daya Bay reactor antineutrino experiment is designed to make a precision measurement of the neut...
The Daya Bay experiment is designed to precisely measure the reactor antineutrino oscillation at a b...
The Daya Bay Reactor Neutrino Experiment consists of eight functionally identical detectors placed u...
The Daya Bay reactor antineutrino experiment is designed to measure the last unknown neutrino mixing...
A reactor-neutrino experiment, Daya Bay, has been proposed to determine the least-known neutrino mix...
The poster presents the latest results of the reactor antineutrino flux and spectrum at Daya Bay. Th...