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Near-Unitary Spin Squeezing in $^{171}$Yb

Atomic Physics 2019-06-12 v3 Quantum Physics

Abstract

Spin squeezing can improve atomic precision measurements beyond the standard quantum limit (SQL), and unitary spin squeezing is essential for improving atomic clocks. We report substantial and nearly unitary spin squeezing in 171^{171}Yb, an optical lattice clock atom. The collective nuclear spin of 103\sim 10^3 atoms is squeezed by cavity feedback, using light detuned from the system's resonances to attain unitarity. The observed precision gain over the SQL is limited by state readout to 6.5(4) dB, while the generated states offer a gain of 12.9(6) dB, limited by the curvature of the Bloch sphere. Using a squeezed state within 30% of unitarity, we demonstrate an interferometer that improves the averaging time over the SQL by a factor of 3.7(2). In the future, the squeezing can be simply transferred onto the optical clock transition of 171^{171}Yb.

Keywords

Cite

@article{arxiv.1901.10499,
  title  = {Near-Unitary Spin Squeezing in $^{171}$Yb},
  author = {Boris Braverman and Akio Kawasaki and Edwin Pedrozo-Peñafiel and Simone Colombo and Chi Shu and Zeyang Li and Enrique Mendez and Megan Yamoah and Leonardo Salvi and Daisuke Akamatsu and Yanhong Xiao and Vladan Vuletić},
  journal= {arXiv preprint arXiv:1901.10499},
  year   = {2019}
}

Comments

5 pages, 4 figures