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arxiv: 1301.4559 · v2 · pith:AEVMZP7Bnew · submitted 2013-01-19 · 🪐 quant-ph · physics.atom-ph

Single atom trapping and control inside a nanosize photonic crystal cavity

classification 🪐 quant-ph physics.atom-ph
keywords atomcrystalmodecavityinsidenanosizeatomiccontrol
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We analyze a possibility to trap, control and load a single atom inside a nanosize cavity formed in a photonic crystal. We consider a 1D nanobeam crystal having two nearly degenerate localized modes with mode maxima at the central air gap, forming a cavity with a mode volume <\lambda^{3}. For this system we found that an atom can be trapped by a mode detuned from an atomic transition and controled by the second resonant mode. We show that atomic motion can be cooled using cavity-enhanced rf Sisyphus cooling. We also discuss how an atom can be loaded inside the nanosize crystal air gap from short-wavelength optical tweezers.

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