arXiv · 1709.05524
A laser excitation scheme for $^{229\text{m}}$Th
Abstract
Direct laser excitation of the lowest known nuclear excited state in $^{229}$Th has been a longstanding objective. It is generally assumed that reaching this goal would require a considerably reduced uncertainty of the isomer's excitation energy compared to the presently adopted value of $(7.8\pm 0.5)$ eV. Here we present a direct laser excitation scheme for $^{229\text{m}}$Th, which circumvents this requirement. The proposed excitation scheme makes use of already existing laser technology and therefore paves the way for nuclear laser spectroscopy. In this concept, the recently experimentally observed internal-conversion decay channel of the isomeric state is used for probing the isomeric population. A signal-to-background ratio of better than $10^4$ and a total measurement time of less than three days for laser scanning appear to be achievable.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Lars von der Wense, Benedict Seiferle, Simon Stellmer, Johannes Weitenberg, Georgy Kazakov, Adriana Pálffy, Peter G. Thirolf. 2017-09-16. A laser excitation scheme for $^{229\text{m}}$Th. https://doi.org/10.1103/physrevlett.119.132503
Cite the original work for its findings. Save a collection to share your selection of sources.