most citedMeasurements of differential and angle-integrated cross sections for the B()Li reaction in the neutron energy range from 1.0 eV to 2.5 MeV

14 citations · 33 across the 4 of their papers we have counts for

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physics.ins-det202114 cited

Timing performance of a multi-pad PICOSEC-Micromegas detector prototype

S. Aune, J. Bortfeldt, F. Brunbauer +39

The multi-pad PICOSEC-Micromegas is an improved detector prototype with a segmented anode, consisting of 19 hexagonal pads. Detailed studies are performed with data collected in a…

physics.ins-det2019

A thermal bonding method for manufacturing Micromegas detectors

Jianxin Feng, Zhiyong Zhang, Jianbei Liu +4

For manufacturing Micromegas detectors, the "bulk" method based on photoetching, was successfully developed and widely used in nuclear and particle physics experiments. However, th…

physics.ins-det2019

Measurement of the neutron beam profile of the Back-n white neutron facility at CSNS with a Micromegas detector

Binbin Qi, Yang Li, Danyang Zhu +83

The Back-n white neutron beam line, which uses back-streaming white neutrons from the spallation target of the China Spallation Neutron Source, is used for nuclear data measurement…

physics.ins-det20194 cited

Precise Charged Particle Timing with the PICOSEC Detector

J. Bortfeldt, F. Brunbauer, C. David +38

The experimental requirements in near future accelerators (e.g. High Luminosity-LHC) has stimulated intense interest in development of detectors with high precision timing capabili…

physics.ins-det2019

Modeling the Timing Characteristics of the PICOSEC Micromegas Detector

J. Bortfeldt, F. Brunbauer, C. David +38

The PICOSEC Micromegas detector can time the arrival of Minimum Ionizing Particles with a sub-25 ps precision. A very good timing resolution in detecting single photons is also dem…