English

The $^{229}$Th isomer: prospects for a nuclear optical clock

Atomic Physics 2020-11-10 v2 Nuclear Experiment

Abstract

The proposal for the development of a nuclear optical clock has triggered a multitude of experimental and theoretical studies. In particular the prediction of an unprecedented systematic frequency uncertainty of about 101910^{-19} has rendered a nuclear clock an interesting tool for many applications, potentially even for a re-definition of the second. The focus of the corresponding research is a nuclear transition of the 229^{229}Th nucleus, which possesses a uniquely low nuclear excitation energy of only 8.12±0.118.12\pm0.11 eV (152.7±2.1152.7\pm2.1 nm). This energy is sufficiently low to allow for nuclear laser spectroscopy, an inherent requirement for a nuclear clock. Recently, some significant progress toward the development of a nuclear frequency standard has been made and by today there is no doubt that a nuclear clock will become reality, most likely not even in the too far future. Here we present a comprehensive review of the current status of nuclear clock development with the objective of providing a rather complete list of literature related to the topic, which could serve as a reference for future investigations.

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Cite

@article{arxiv.2009.13633,
  title  = {The $^{229}$Th isomer: prospects for a nuclear optical clock},
  author = {Lars von der Wense and Benedict Seiferle},
  journal= {arXiv preprint arXiv:2009.13633},
  year   = {2020}
}
R2 v1 2026-06-23T18:51:40.923Z