Bulletin of the American Physical Society
92nd Annual Meeting of the Southeastern Section of the APS
Thursday–Saturday, October 23–25, 2025; Festival Conference and Student Center, James Madison University, Harrisonburg, Virginia
Session D01: Poster Session (4:00PM - 5:45PM)
4:00 PM,
Thursday, October 23, 2025
James Madison University
Room: Grand Ballroom
Abstract: D01.00099 : Analysis of Neutron-induced Backgrounds in 100Mo for 0νββ study*
Presenter:
Sarnith Nagarajan
(Tennessee Technological University)
Authors:
Sarnith Nagarajan
(Tennessee Technological University)
Mary F Kidd
(Tennessee Technological University)
Sean Finch
(Duke University and TUNL)
Werner Tornow
(Duke University)
Collaboration:
Duke, TUNL
(Z, A) → (Z+2, A) + 2e⁻ + 2νˉe
However, in Neutrinoless Double Beta Decay (0νββ), the two neutrinos are not emitted:
(Z, A) → (Z+2, A) + 2e-
This process is possible only if neutrinos are Majorana particles, implying lepton-number violation by two units and providing a potential explanation for the matter–antimatter imbalance in the universe. In double beta decay experiments, neutron-induced backgrounds can interfere with or mimic the detection signal. A major source arises from inelastic neutron scattering, where a fast neutron excites a nucleus that de-excites by emitting γ-rays. By measuring and analyzing neutron-induced γ-ray backgrounds in natural molybdenum, we can assess their impact and develop strategies for suppression in searches for 0νββ decay. These measurements were performed using 4.5 MeV-neutrons produced at TUNL in the shielded source area. We examined an ROI of ±5 keV around the 3034 keV Q-value and identified 3 potential candidates. We will report progress on the analysis of the neutron inelastic scattering on 95, 97Mo, and 100Mo.
*CISE Grant, Tennessee Tech University
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