Accurate knowledge of electron transport properties is vital to understanding the information provided by liquid argon time projection chambers (LArTPCs). Ionization electron drift-lifetime, local electric field distortions caused by positive ion accumulation, and electron diffusion can all significantly impact the measured signal waveforms. This paper presents a measurement of the effective longitudinal electron diffusion coefficient, $D_L$, in MicroBooNE at the nominal electric field strength of 273.9 V/cm. Historically, this measurement has been made in LArTPC prototype detectors. This represents the first measurement in a large-scale (85 tonne active volume) LArTPC operating in a neutrino beam. This is the largest dataset ever used for ...
MicroBooNE is a liquid argon time projection chamber which has been running in the Booster Neutrino ...
The MicroBooNE liquid argon time projection chamber located at Fermilab is a neutrino experiment ded...
In this letter we present the first measurements of an exclusive electron neutrino cross section wit...
This document was prepared by the MicroBooNE collaboration using the resources of the Fermi National...
Liquid Argon Time Projection Chambers (LArTPCs) are a rising technology in the field of experimental...
We describe the concept and procedure of drifted-charge extraction developed in the MicroBooNE exper...
The single-phase liquid argon time projection chamber (LArTPC) provides a large amount of detailed i...
We describe a method used to calibrate the position- and time-dependent response of the MicroBooNE l...
We present a measurement of the combined $\nu_e$ + $\bar{\nu}_e$ flux-averaged charged-current inclu...
We report the first measurement of the flux-integrated cross section of νμ charged-current single π0...
We present the first measurement of the single-differential νe+¯νe charged-current inclusive cross s...
We present the first measurement of the single-differential $\nu_e + \bar{\nu}_e$ charged-current in...
We describe the concept and procedure of drifted-charge extraction developed in the MicroBooNE exper...
We present a measurement of electron neutrino interactions from the Fermilab Booster Neutrino Beam u...
In this paper we present the first measurements of an exclusive electron neutrino cross section with...
MicroBooNE is a liquid argon time projection chamber which has been running in the Booster Neutrino ...
The MicroBooNE liquid argon time projection chamber located at Fermilab is a neutrino experiment ded...
In this letter we present the first measurements of an exclusive electron neutrino cross section wit...
This document was prepared by the MicroBooNE collaboration using the resources of the Fermi National...
Liquid Argon Time Projection Chambers (LArTPCs) are a rising technology in the field of experimental...
We describe the concept and procedure of drifted-charge extraction developed in the MicroBooNE exper...
The single-phase liquid argon time projection chamber (LArTPC) provides a large amount of detailed i...
We describe a method used to calibrate the position- and time-dependent response of the MicroBooNE l...
We present a measurement of the combined $\nu_e$ + $\bar{\nu}_e$ flux-averaged charged-current inclu...
We report the first measurement of the flux-integrated cross section of νμ charged-current single π0...
We present the first measurement of the single-differential νe+¯νe charged-current inclusive cross s...
We present the first measurement of the single-differential $\nu_e + \bar{\nu}_e$ charged-current in...
We describe the concept and procedure of drifted-charge extraction developed in the MicroBooNE exper...
We present a measurement of electron neutrino interactions from the Fermilab Booster Neutrino Beam u...
In this paper we present the first measurements of an exclusive electron neutrino cross section with...
MicroBooNE is a liquid argon time projection chamber which has been running in the Booster Neutrino ...
The MicroBooNE liquid argon time projection chamber located at Fermilab is a neutrino experiment ded...
In this letter we present the first measurements of an exclusive electron neutrino cross section wit...