One of the main goals of MicroBooNE is to investigate the anomalous events observed by MiniBooNE and defined as the Low Energy Excess (LEE). The power of the Liquid Argon Time Projection Chamber (LArTPC) technology lies in its 3D bubble chamber quality images, along with the particle identification capability and electron/photon separation. The study of the electron neutrino appearance in MicroBooNE requires both the identification of charged current (CC) electron neutrino interactions and the rejection of all other kinds of interactions. The backgrounds consist of two main categories: muon neutrino CC and neutral current (NC) events. In this poster we describe how NC events are identified and rejected in view of the LEE analysis, using the...
MicroBooNE is a liquid argon time projection chamber (LArTPC) detector positioned on the Fermilab bo...
For a surface Liquid Argon Time Projection Chamber (LArTPC) to detect neutrino interactions, the rej...
This document is prepared by the MicroBooNE collaboration using the resources of the Fermi National...
One of the main goals of MicroBooNE is to investigate the anomalous events observed by MiniBooNE and...
MicroBooNE is an 85 metric ton single-phase Liquid Argon Time Projection Chamber (LArTPC) experiment...
The MicroBooNE detector is an 85 ton active mass liquid argon TPC (LArTPC) and is located along the ...
We report a search for an anomalous excess of inclusive charged-current (CC) νe interactions using t...
MicroBooNE is an 85 ton active volume liquid argon time projection chamber (LArTPC) neutrino experim...
MicroBooNE (the Micro Booster Neutrino Experiment) is a liquid argon time-projection chamber experim...
The Micro Booster Neutrino Experiment (MicroBooNE) is a Liquid Argon Time Projection Chamber (LArTPC...
MicroBooNE is a Liquid Argon Time Projection Chamber which has been taking neutrino data at Fermilab...
MicroBooNE is a 85 metric ton fiducial mass Liquid Argon TPC (LArTPC) neutrino experiment at Fermila...
The MiniBooNE Low Energy Excess (LEE) is the observation of anomalous events, whose true origin coul...
Abstract An accurate and efficient event reconstruction is required to realize th...
MicroBooNE is an approximately 90 metric ton single-phase liquid argon time projection chamber (LArT...
MicroBooNE is a liquid argon time projection chamber (LArTPC) detector positioned on the Fermilab bo...
For a surface Liquid Argon Time Projection Chamber (LArTPC) to detect neutrino interactions, the rej...
This document is prepared by the MicroBooNE collaboration using the resources of the Fermi National...
One of the main goals of MicroBooNE is to investigate the anomalous events observed by MiniBooNE and...
MicroBooNE is an 85 metric ton single-phase Liquid Argon Time Projection Chamber (LArTPC) experiment...
The MicroBooNE detector is an 85 ton active mass liquid argon TPC (LArTPC) and is located along the ...
We report a search for an anomalous excess of inclusive charged-current (CC) νe interactions using t...
MicroBooNE is an 85 ton active volume liquid argon time projection chamber (LArTPC) neutrino experim...
MicroBooNE (the Micro Booster Neutrino Experiment) is a liquid argon time-projection chamber experim...
The Micro Booster Neutrino Experiment (MicroBooNE) is a Liquid Argon Time Projection Chamber (LArTPC...
MicroBooNE is a Liquid Argon Time Projection Chamber which has been taking neutrino data at Fermilab...
MicroBooNE is a 85 metric ton fiducial mass Liquid Argon TPC (LArTPC) neutrino experiment at Fermila...
The MiniBooNE Low Energy Excess (LEE) is the observation of anomalous events, whose true origin coul...
Abstract An accurate and efficient event reconstruction is required to realize th...
MicroBooNE is an approximately 90 metric ton single-phase liquid argon time projection chamber (LArT...
MicroBooNE is a liquid argon time projection chamber (LArTPC) detector positioned on the Fermilab bo...
For a surface Liquid Argon Time Projection Chamber (LArTPC) to detect neutrino interactions, the rej...
This document is prepared by the MicroBooNE collaboration using the resources of the Fermi National...