학술논문

Coherent excitation of a $\mu$Hz scale optical magnetic quadrupole transition
Document Type
Working Paper
Source
Physical Review Letters 132, 253201 (2024)
Subject
Physics - Atomic Physics
Condensed Matter - Quantum Gases
Quantum Physics
Language
Abstract
We report on the coherent excitation of the ultranarrow $^{1}\mathrm{S}_0$-$^{3}\mathrm{P}_2$ magnetic quadrupole transition in $^{88}\mathrm{Sr}$. By confining atoms in a state insensitive optical lattice, we achieve excitation fractions of 97(1)% and observe linewidths as narrow as 58(1) Hz. With Ramsey spectroscopy, we find coherence times of 14(1) ms, which can be extended to 266(36) ms using a spin-echo sequence. We determine the linewidth of the M2 transition to 24(7) $\mu$Hz, confirming longstanding theoretical predictions. These results establish an additional clock transition in strontium and pave the way for applications of the metastable $^{3}\mathrm{P}_2$ state in quantum computing and quantum simulations.
Comment: 6 pages, 4 figures, 5 pages supplemental material