Neutron detectors for the ESS diffractometers
I. Stefanescu, M. Christensen, J. Fenske, R. Hall-Wilton, P.F. Henry,, O. Kirstein, M. Mueller, G. Nowak, D. Pooley, D. Raspino, N. Rhodes, J., Saroun, J. Schefer, E. Schooneveld, J. Sykora, W. Schweika

TL;DR
This paper reviews the detector requirements for the European Spallation Source's neutron diffraction instruments, evaluates available technologies, and introduces a method to estimate event rates to optimize detector design.
Contribution
It presents a comprehensive analysis of detector needs for ESS diffraction instruments and proposes a generic approach to predict event rates using simulations and experimental data.
Findings
Identified key detector requirements for ESS instruments.
Compared available detector technologies and their challenges.
Developed a method to estimate event rates for detector optimization.
Abstract
The ambitious instrument suite for the future European Spallation Source whose civil construction started recently in Lund, Sweden, demands a set of diverse and challenging requirements for the neutron detectors. For instance, the unprecedented high flux expected on the samples to be investigated in neutron diffraction or reflectometry experiments requires detectors that can handle high counting rates, while the investigation of sub-millimeter protein crystals will only be possible with large-area detectors that can achieve a position resolution as low as 200 {\mu}m. This has motivated an extensive research and development campaign to advance the state-of-the-art detector and to find new technologies that can reach maturity by the time the ESS will operate at full potential. This paper presents the key detector requirements for three of the Time-of-Flight diffraction instrument concepts…
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