Evaluation of a method for time-of-flight, wavelength and distance calibration for neutron scattering instruments by means of a mini-chopper and standard neutron monitors
L. Vergara, M. Arai, R. Woracek, M. Olsson, A. Quintanilla, S. Alcock,, J. Nilsson, K. Kanaki, P.M. Kadletz, O. Kirstein, R. Hall-Wilton, N., Tsapatsaris

TL;DR
This paper evaluates a simple, practical method for calibrating neutron wavelength and distance in scattering instruments using a mini-chopper and standard monitors, achieving sub-1% accuracy with potential for further improvements.
Contribution
The study introduces and experimentally validates a straightforward calibration method for neutron TOF to wavelength conversion that does not require complex equipment or procedures.
Findings
Achieved ~1.8% wavelength accuracy at >4 Å
Potential to reduce error below 0.5% with setup modifications
Method requires only two measurements and no crystals or complex fitting
Abstract
Accurate conversion of neutron time-of-flight (TOF) to wavelength, and its uncertainty, is of fundamental importance to neutron scattering measurements. Especially in cases where instruments are highly configurable, the determination of the absolute wavelength after any change must always be performed. Inspired by the manner with which neutron spectrometers determine the absolute wavelength, we evaluate for the first time, in the author's knowledge, a commonly used method for converting TOF to neutron wavelength, the distance of a monitor from the source of neutrons and we analytically calculate the uncertainty contributions that limit the precision of the conversion. The method was evaluated at the V20 test beamline at the Helmholtz Zentrum Berlin (HZB), emulating the ESS source with a pulse of 2.86 ms length and 14 Hz repetition rate, by using a mini-chopper operated at 140 Hz, beam…
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Taxonomy
TopicsNuclear Physics and Applications · Radiation Detection and Scintillator Technologies · Atomic and Subatomic Physics Research
