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Realization of a fractional period adiabatic superlattice

Quantum Gases 2020-02-19 v1 Atomic Physics Quantum Physics

Abstract

We propose and realize a deeply sub-wavelength optical lattice for ultracold neutral atoms using NN resonantly Raman-coupled internal degrees of freedom. Although counter-propagating lasers with wavelength λ\lambda provided two-photon Raman coupling, the resultant lattice-period was λ/2N\lambda/2N, an NN-fold reduction as compared to the conventional λ/2\lambda/2 lattice period. We experimentally demonstrated this lattice built from the three F=1F=1 Zeeman states of a 87Rb^{87}{\rm Rb} Bose-Einstein condensate, and generated a lattice with a λ/6=132 nm\lambda/6= 132\ {\rm nm} period from λ=790 nm\lambda=790 \ {\rm nm} lasers. Lastly, we show that adding an additional RF coupling field converts this lattice into a superlattice with NN wells uniformly spaced within the original λ/2\lambda/2 unit cell.

Keywords

Cite

@article{arxiv.1907.08910,
  title  = {Realization of a fractional period adiabatic superlattice},
  author = {R. P. Anderson and D. Trypogeorgos and A. Valdés-Curiel and Q. -Y. Liang and J. Tao and M. Zhao and T. Andrijauskas and G. Juzeliūnas and I. B. Spielman},
  journal= {arXiv preprint arXiv:1907.08910},
  year   = {2020}
}

Comments

5 pagesl 4 figures