The MicroBooNE experiment is performing a series of measurements to address the nature of the excess of low energy electromagnetic interactions observed by the MiniBooNE collaboration. One analysis looks for neutrino-induced neutral current (NC) resonant Delta(1232) baryon production followed by Delta radiative decay from the Fermilab Booster neutrino beam, while three others look for electron neutrino interactions from the Fermilab Booster neutrino beam. In the talk, we will present the latest results on the searches for (1) neutral current resonant Delta-->N(gamma) decay and (2) an anomalous excess of electron neutrino events in multiple single electron final states. The talk will include details on event selection, background estimation...
Solar and atmospheric neutrino oscillations, recently confirmed by reactor and accelerator-based exp...
This thesis describes work towards the search for a low energy excess of electromagnetic events in t...
The primary goal of the MicroBooNE experiment is to investigate the anomalies observed in accelerato...
MicroBooNE is a Liquid Argon Time Projection Chamber which has been taking neutrino data at Fermilab...
MicroBooNE, an 85 metric ton (active mass) liquid argon time projection chamber (TPC), began studyin...
We present a measurement of νe interactions from the Fermilab Booster Neutrino Beam using the MicroB...
We report results from a search for neutrino-induced neutral current (NC) resonant Δ(1232) baryon pr...
The Micro Booster Neutrino Experiment (MicroBooNE) is a Liquid Argon Time Projection Chamber (LArTPC...
This article presents a measurement of νe interactions without pions in the final state using the Mi...
The Micro Booster Neutrino Experiment (MicroBooNE) is a Liquid Argon Time Projection Chamber (LArTPC...
MicroBooNE is a liquid-argon-based neutrino experiment, which began collecting data in Fermilab's Bo...
We report a search for an anomalous excess of inclusive charged-current (CC) νe interactions using t...
MicroBooNE is a liquid argon time projection chamber that operates in the Booster Neutrino Beam at F...
MicroBooNE, a Liquid Argon Time Projection Chamber with an active volume of 85 metric tons, is locat...
MicroBooNE is a liquid argon time projection chamber that collected neutrino data at Fermilab's Boos...
Solar and atmospheric neutrino oscillations, recently confirmed by reactor and accelerator-based exp...
This thesis describes work towards the search for a low energy excess of electromagnetic events in t...
The primary goal of the MicroBooNE experiment is to investigate the anomalies observed in accelerato...
MicroBooNE is a Liquid Argon Time Projection Chamber which has been taking neutrino data at Fermilab...
MicroBooNE, an 85 metric ton (active mass) liquid argon time projection chamber (TPC), began studyin...
We present a measurement of νe interactions from the Fermilab Booster Neutrino Beam using the MicroB...
We report results from a search for neutrino-induced neutral current (NC) resonant Δ(1232) baryon pr...
The Micro Booster Neutrino Experiment (MicroBooNE) is a Liquid Argon Time Projection Chamber (LArTPC...
This article presents a measurement of νe interactions without pions in the final state using the Mi...
The Micro Booster Neutrino Experiment (MicroBooNE) is a Liquid Argon Time Projection Chamber (LArTPC...
MicroBooNE is a liquid-argon-based neutrino experiment, which began collecting data in Fermilab's Bo...
We report a search for an anomalous excess of inclusive charged-current (CC) νe interactions using t...
MicroBooNE is a liquid argon time projection chamber that operates in the Booster Neutrino Beam at F...
MicroBooNE, a Liquid Argon Time Projection Chamber with an active volume of 85 metric tons, is locat...
MicroBooNE is a liquid argon time projection chamber that collected neutrino data at Fermilab's Boos...
Solar and atmospheric neutrino oscillations, recently confirmed by reactor and accelerator-based exp...
This thesis describes work towards the search for a low energy excess of electromagnetic events in t...
The primary goal of the MicroBooNE experiment is to investigate the anomalies observed in accelerato...