Decay-Resolved Charge Changes from Radioactive Decays in Levitated Microparticles

Fuente: arXiv
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Hauptverfasser: Wang, Jiaxiang, Penny, T. W., Tseng, Yu-Han, Siegel, Benjamin, Moore, David C.
Format: Preprint
Veröffentlicht: 2026
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author Wang, Jiaxiang
Penny, T. W.
Tseng, Yu-Han
Siegel, Benjamin
Moore, David C.
author_facet Wang, Jiaxiang
Penny, T. W.
Tseng, Yu-Han
Siegel, Benjamin
Moore, David C.
contents We measure event-by-event discrete changes in the net electric charge of an optically levitated silica microsphere arising from individual radioactive decays within the sphere, in coincidence with energy depositions in a nearby scintillation detector. The net charge of the levitated sphere is continuously monitored by measuring its driven response to an oscillating electric field, allowing individual charge-change events to be resolved on millisecond timescales with precision below an elementary charge. Simultaneously, $α$ and $β$ particles emitted during decays of implanted $^{212}$Pb and its daughters are detected using a scintillator read out with an array of silicon photomultipliers. By correlating reconstructed charge-change times with the scintillator response, we can directly attribute abrupt changes in the sphere's net charge to individual nuclear decays, and identify differences in the distribution of charges ejected for $α$ and $β$ decays. These results establish a new approach for studying low energy charged particles emitted by radioactive decays at the single-decay level, and identify showers of radiogenically produced low-energy electrons emitted by $α$-decaying radon daughters implanted near solid surfaces.
format Preprint
id arxiv_https___arxiv_org_abs_2603_14979
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Decay-Resolved Charge Changes from Radioactive Decays in Levitated Microparticles
Wang, Jiaxiang
Penny, T. W.
Tseng, Yu-Han
Siegel, Benjamin
Moore, David C.
Instrumentation and Detectors
Nuclear Experiment
Quantum Physics
We measure event-by-event discrete changes in the net electric charge of an optically levitated silica microsphere arising from individual radioactive decays within the sphere, in coincidence with energy depositions in a nearby scintillation detector. The net charge of the levitated sphere is continuously monitored by measuring its driven response to an oscillating electric field, allowing individual charge-change events to be resolved on millisecond timescales with precision below an elementary charge. Simultaneously, $α$ and $β$ particles emitted during decays of implanted $^{212}$Pb and its daughters are detected using a scintillator read out with an array of silicon photomultipliers. By correlating reconstructed charge-change times with the scintillator response, we can directly attribute abrupt changes in the sphere's net charge to individual nuclear decays, and identify differences in the distribution of charges ejected for $α$ and $β$ decays. These results establish a new approach for studying low energy charged particles emitted by radioactive decays at the single-decay level, and identify showers of radiogenically produced low-energy electrons emitted by $α$-decaying radon daughters implanted near solid surfaces.
title Decay-Resolved Charge Changes from Radioactive Decays in Levitated Microparticles
topic Instrumentation and Detectors
Nuclear Experiment
Quantum Physics
url https://arxiv.org/abs/2603.14979