arXiv · 1506.00793
Subwavelength Transportation of Light with Atomic Resonances
Abstract
We propose and investigate a new type of optical waveguide made by an array of atoms without involving conventional Bragg scattering or total internal reflection. A finite chain of atoms collectively coupled through their intrinsic resonance supports a propagating mode with minimal radiative loss when the array spacing $a$ is around 0.6$λ_0/2π$ where $λ_0$ is the wavelength of the nearly resonant optical transition. We find that the transportation is robust with respect to position fluctuation and remains possible when the atoms are placed on a circle. Our result paves the way to implement the subwavelength transportation of light in integrated optical circuits with cold atoms.
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Siu-Tat Chui, Shengwang Du, Gyu-Boong Jo. 2015-06-02. Subwavelength Transportation of Light with Atomic Resonances. https://doi.org/10.1103/physreva.92.053826
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