DOE OSTI · 2560931
Inference of the neutron down-scatter ratio using neutron time-of-flight data for DT-layered implosions on the OMEGA laser
Abstract
First analysis of the neutron time of flight (nTOF) data is presented to infer the areal density using the neutron down-scatter ratio (DSR) for OMEGA deuterium–tritium (DT)-layered (cryogenic) implosions. The required very-high-dynamic range (nTOF) signal is constructed using an nTOF detector [Forrest et al., Rev. Sci. Ins. 83, 10D919 (2012)] with multiple time-gated photomultiplier tubes. The nTOF data are analyzed using a forward-fit technique to account for the detector responses and infer the DSR and areal density for DT-layered implosions. The areal densities inferred using this analysis are found to be in agreement with the areal densities measured using the magnetic recoil spectrometer detector that is located in a similar line-of-sight. This work establishes the feasibility of the DSR measurement using nTOF data on OMEGA and provides an additional areal-density measurement that will benefit the assessment of the implosion performance and 3D reconstruction of the imploded core.
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Patel, D. [University of Rochester, NY (United States)] (ORCID:0000000312044468), Knauer, J. P. [University of Rochester, NY (United States)], Betti, R. [University of Rochester, NY (United States)], Stanley, B. [University of Rochester, NY (United States)] (ORCID:0009000656258598), Gopalaswamy, V. [University of Rochester, NY (United States)] (ORCID:0000000280139314), Schwemmlein, A. [University of Rochester, NY (United States)] (ORCID:0000000274445673), Rosenberg, M. J. [University of Rochester, NY (United States)], Regan, S. P. [University of Rochester, NY (United States)] (ORCID:0000000163597172). 2025-04-22. Inference of the neutron down-scatter ratio using neutron time-of-flight data for DT-layered implosions on the OMEGA laser. https://doi.org/10.1063/5.0250882
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