Mechanical detection of nuclear decays

Fuente: arXiv
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Main Authors: Wang, Jiaxiang, Penny, T. W., Recoaro, Juan, Siegel, Benjamin, Tseng, Yu-Han, Moore, David C.
Format: Preprint
Published: 2024
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author Wang, Jiaxiang
Penny, T. W.
Recoaro, Juan
Siegel, Benjamin
Tseng, Yu-Han
Moore, David C.
author_facet Wang, Jiaxiang
Penny, T. W.
Recoaro, Juan
Siegel, Benjamin
Tseng, Yu-Han
Moore, David C.
contents We report the detection of individual nuclear $α$ decays through the mechanical recoil of the entire micron-sized particle in which the decaying nuclei are embedded. Momentum conservation ensures that such measurements are sensitive to any particles emitted in the decay, including neutral particles that may otherwise evade detection with existing techniques. Detection of the minuscule recoil of an object more than $10^{12}$ times more massive than the emitted particles is made possible by recently developed techniques in levitated optomechanics, which enable high-precision optical control and measurement of the mechanical motion of optically trapped particles. Observation of a change in the net charge of the particle coincident with the recoil allows decays to be identified with background levels at the micro-Becquerel level. The techniques developed here may find use in fields ranging from nuclear forensics to dark matter and neutrino physics.
format Preprint
id arxiv_https___arxiv_org_abs_2402_13257
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Mechanical detection of nuclear decays
Wang, Jiaxiang
Penny, T. W.
Recoaro, Juan
Siegel, Benjamin
Tseng, Yu-Han
Moore, David C.
Instrumentation and Detectors
Nuclear Experiment
Quantum Physics
We report the detection of individual nuclear $α$ decays through the mechanical recoil of the entire micron-sized particle in which the decaying nuclei are embedded. Momentum conservation ensures that such measurements are sensitive to any particles emitted in the decay, including neutral particles that may otherwise evade detection with existing techniques. Detection of the minuscule recoil of an object more than $10^{12}$ times more massive than the emitted particles is made possible by recently developed techniques in levitated optomechanics, which enable high-precision optical control and measurement of the mechanical motion of optically trapped particles. Observation of a change in the net charge of the particle coincident with the recoil allows decays to be identified with background levels at the micro-Becquerel level. The techniques developed here may find use in fields ranging from nuclear forensics to dark matter and neutrino physics.
title Mechanical detection of nuclear decays
topic Instrumentation and Detectors
Nuclear Experiment
Quantum Physics
url https://arxiv.org/abs/2402.13257