A trailer-mounted 87Sr optical lattice clock reaches a 2.1×10^-18 total systematic uncertainty, with a 4.0×10^-19 blackbody radiation shift uncertainty enabled by a cold copper interrogation shield.
Cryogenic Optical Lattice Clock with $1.7\times 10^{-20}$ Blackbody Radiation Stark Uncertainty
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Controlling the Stark perturbation from ambient thermal radiation is key to advancing the performance of many atomic frequency standards, including state-of-the-art optical lattice clocks (OLCs). We demonstrate a cryogenic OLC that utilizes a dynamically actuated radiation shield to control the perturbation at $1.7\times10^{-20}$ fractional frequency, a factor of $\sim$40 beyond the best OLC to date. Our shield furnishes the atoms with a near-ideal cryogenic blackbody radiation (BBR) environment by rejecting external thermal radiation at the part-per-million level during clock spectroscopy, overcoming a key limitation with previous cryogenic BBR control solutions in OLCs. While the lowest BBR shift uncertainty is realized with cryogenic operation, we further exploit the radiation control that the shield offers over a wide range of temperatures to directly measure and verify the leading BBR Stark dynamic correction coefficient for ytterbium. This independent measurement reduces the literature-combined uncertainty of this coefficient by 30%, thus benefiting state-of-the-art Yb OLCs operated at room temperature. We verify the static BBR coefficient for Yb at the low $10^{-18}$ level.
citation-role summary
citation-polarity summary
fields
physics.atom-ph 1years
2025 1verdicts
ACCEPT 1roles
background 1polarities
unclear 1representative citing papers
citing papers explorer
-
Transportable strontium lattice clock with $4 \times 10^{-19}$ blackbody radiation shift uncertainty
A trailer-mounted 87Sr optical lattice clock reaches a 2.1×10^-18 total systematic uncertainty, with a 4.0×10^-19 blackbody radiation shift uncertainty enabled by a cold copper interrogation shield.