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arxiv: 1410.0528 · v2 · pith:BXMIL3NQnew · submitted 2014-10-02 · ❄️ cond-mat.quant-gas · cond-mat.mes-hall· physics.atom-ph

Sub-micron period lattice structures of magnetic microtraps for ultracold atoms on an atom chip

classification ❄️ cond-mat.quant-gas cond-mat.mes-hallphysics.atom-ph
keywords magneticlatticeatomsfilmperiodfabricatedgeometrieshigh
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We report on the design, fabrication and characterization of magnetic nanostructures to create a lattice of magnetic traps with sub--micron period for trapping ultracold atoms. These magnetic nanostructures were fabricated by patterning a Co/Pd multilayered magnetic film grown on a silicon substrate using high precision e-beam lithography and reactive ion etching. The Co/Pd film was chosen for its small grain size and high remanent magnetization and coercivity. The fabricated structures are designed to magnetically trap $^{87}$Rb atoms above the surface of the magnetic film with 1D and 2D (triangular and square) lattice geometries and sub-micron period. Such magnetic lattices can be used for quantum tunneling and quantum simulation experiments, including using geometries and periods that may be inaccessible with optical lattice.

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