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researcher

M. Harrison

4 papers hereh-index 00 citations6 works total

Matching runs newest-first, so older work may not be attached to this profile yet.

author position
  • middle author3

Across the 3 of 4 papers where every author was matched, so the position is known.

fields
  • hep-ex2
  • physics.ins-det2
same name
  • M. Harrison — 2 papers, h 2
  • M. Harrison — 1 paper, h 1
  • M. Harrison — 1 paper, h 0
  • M. Harrison — 1 paper, h 0
  • M. Harrison — 1 paper, h 1
  • M. Harrison — 1 paper, h 10

Either other researchers who publish under this name, or the same person where the external sources have not merged their records.

identity via Semantic Scholar / OpenAlex

collaborators

4 papers

hep-ex2026

Demonstration and performance of an online data selection algorithm for liquid argon time projection chambers using MicroBooNE

MicroBooNE collaboration, P. Abratenko, D. Andrade Aldana +191

The MicroBooNE detector is a liquid argon time projection chamber (LArTPC) that produces three-dimensional images of particle interactions using ionization charge collected by anod…

hep-ex2026

First Measurement of Sub-GeV I^½I^​¼ Charged-Current Coherent Pion Production on Argon in MicroBooNE

MicroBooNE collaboration, P. Abratenko, D. Andrade Aldana +189

We report a measurement of the charged-current coherent pion production cross section on argon using the MicroBooNE liquid argon time projection chamber exposed to the Booster Neut…

physics.ins-det2026

Characterizing the energy resolution of the MicroBooNE LArTPC at the MeV scale using monoenergetic features of 208Tl decays

MicroBooNE collaboration, P. Abratenko, D. Andrade Aldana +189

A detailed understanding of the capabilities and fidelity of low-energy reconstruction is crucial for taking advantage of MeV-scale neutrino physics opportunities in liquid argon t…

physics.ins-det2025

Measured gain suppression in FBK LGADs with different active thicknesses

J. Yang, S. Braun, Q. Buat +16

In recent years, the gain suppression mechanism has been studied for large localized charge deposits in Low-Gain Avalanche Detectors (LGADs). LGADs are a thin silicon detector with…

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