Coherent excitation of a $μ$Hz scale optical magnetic quadrupole transition

Fuente: arXiv
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Main Authors: Klüsener, V., Pucher, S., Yankelev, D., Trautmann, J., Spriestersbach, F., Filin, D., Porsev, S. G., Safronova, M. S., Bloch, I., Blatt, S.
Format: Preprint
Published: 2024
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author Klüsener, V.
Pucher, S.
Yankelev, D.
Trautmann, J.
Spriestersbach, F.
Filin, D.
Porsev, S. G.
Safronova, M. S.
Bloch, I.
Blatt, S.
author_facet Klüsener, V.
Pucher, S.
Yankelev, D.
Trautmann, J.
Spriestersbach, F.
Filin, D.
Porsev, S. G.
Safronova, M. S.
Bloch, I.
Blatt, S.
contents 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) $μ$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.
format Preprint
id arxiv_https___arxiv_org_abs_2401_03934
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Coherent excitation of a $μ$Hz scale optical magnetic quadrupole transition
Klüsener, V.
Pucher, S.
Yankelev, D.
Trautmann, J.
Spriestersbach, F.
Filin, D.
Porsev, S. G.
Safronova, M. S.
Bloch, I.
Blatt, S.
Atomic Physics
Quantum Gases
Quantum Physics
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) $μ$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.
title Coherent excitation of a $μ$Hz scale optical magnetic quadrupole transition
topic Atomic Physics
Quantum Gases
Quantum Physics
url https://arxiv.org/abs/2401.03934