activity
20122020
most citedRadiation damage and thermal shock response of carbon-fiber-reinforced materials to intense high-energy proton beams

14 citations · 22 across the 5 of their papers we have counts for

collaborators

6 papers

physics.ins-det2020

Tensile behavior of dual-phase titanium alloys under high-intensity proton beam exposure: radiation-induced omega phase transformation in Ti-6Al-4V

Taku Ishida, Eiichi Wakai, Shunsuke Makimura +17

A high-intensity proton beam exposure with 181 MeV energy has been conducted at Brookhaven Linac Isotope Producer facility on various material specimens for accelerator targetry ap…

physics.ins-det20197 cited

Radiation Damage Studies on Titanium Alloys as High Intensity Proton Accelerator Beam Window Materials

Taku Ishida, Eiichi Wakai, Shunsuke Makimura +12

A high-strength dual alpha+beta phase titanium alloy Ti-6Al-4V is utilized as a material for beam windows in several accelerator target facilities. However, relatively little is kn…

physics.acc-ph201714 cited

Radiation damage and thermal shock response of carbon-fiber-reinforced materials to intense high-energy proton beams

N. Simos, Z. Zhong, S. Ghose +14

A comprehensive study on the effects of energetic protons on carbon-fiber composites and compounds under consideration for use as low-Z pion production targets in future high-power…

physics.acc-ph2015

Current status of the LBNE neutrino beam

Craig Damon Moore, Ken Bourkland, Cory Francis Crowley +13

The Long Baseline Neutrino Experiment (LBNE) will utilize a neutrino beamline facility located at Fermilab. The facility is designed to aim a beam of neutrinos toward a detector pl…

physics.acc-ph20121 cited

Overview of the LBNE Neutrino Beam

C. D. Moore, Yun He, Patrick Hurh +11

The Long Baseline Neutrino Experiment (LBNE) will utilize a neutrino beamline facility located at Fermilab. The facility is designed to aim a beam of neutrinos toward a detector pl…

physics.acc-ph2012

High-power targets: experience and R&D for 2 MW

P. Hurh, O. Caretta, T. Davenne +3

High-power particle production targets are crucial elements of future neutrino and other rare particle beams. Fermilab plans to produce a beam of neutrinos (LBNE) with a 2.3 MW pro…