Modulated deuteron spectra observed with the Magnetic Recoil neutron Spectrometer at the National Ignition Facility
arXiv:2509.06999
Abstract
The Magnetic Recoil Spectrometer (MRS) on the National Ignition Facility is used to measure the neutron spectrum from deuterium-tritium fueled inertial confinement fusion implosions via n-d elastic scattering and magnetic dispersion of recoil deuterons. From the MRS-determined neutron spectrum, the yield (), apparent ion temperature () and areal density () are determined. However, anomalous energy modulations in recoil deuterons have been observed in several high-yield indirect drive experiments (). These observations raise concerns about their potential impact on the MRS-inferred performance metrics. Analytic calculations and particle-in-cell simulations are used to examine the possible beam-plasma instabilities, which indicate the two-stream instability as the driving mechanism behind energy modulations. Based on a statistical analysis of synthetic deuteron spectra, the modulations-induced errors are found to be within the errors of the determined , and values and thus do not have a significant impact on the MRS measurement.
Submitted to Journal of Plasma Physics