Accurate determination of blackbody radiation shifts in a strontium molecular lattice clock

Open Access
Authors
  • B. Iritani
  • E. Tiberi
  • W. Skomorowski
  • R. Moszynski
Publication date 29-12-2023
Journal Physical Review Letters
Article number 263201
Volume | Issue number 131 | 26
Number of pages 8
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Van der Waals-Zeeman Institute (WZI)
Abstract
Molecular lattice clocks enable the search for new physics, such as fifth forces or temporal variations of fundamental constants, in a manner complementary to atomic clocks. Blackbody radiation (BBR) is a major contributor to the systematic error budget of conventional atomic clocks and is notoriously difficult to characterize and control. Here, we combine infrared Stark-shift spectroscopy in a molecular lattice clock and modern quantum chemistry methods to characterize the polarizabilities of the Sr2 molecule from dc to infrared. Using this description, we determine the static and dynamic blackbody radiation shifts for all possible vibrational clock transitions to the 10−16 level. This constitutes an important step toward millihertz-level molecular spectroscopy in Sr2 and provides a framework for evaluating BBR shifts in other homonuclear molecules.
Document type Article
Note With supplementary file
Language English
Published at https://doi.org/10.48550/arXiv.2306.00981 https://doi.org/10.1103/PhysRevLett.131.263201
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2306.00981-1 (Submitted manuscript)
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