A nanowaveguide platform for collective atom-light interaction
arXiv:1408.6339 · doi:10.1063/1.4929947
Abstract
We propose a nanowaveguide platform for collective atom-light interaction through evanescent field coupling. We have developed a 1cm-long silicon nitride nanowaveguide can use evanescent fields to trap and probe an ensemble of 87Rb atoms. The waveguide has a sub-micrometer square mode area and was designed with tapers for high fiber-to-waveguide coupling efficiencies at near-infrared wavelengths (750nm to 1100nm). Inverse tapers in the platform adiabatically transfer a weakly guided mode of fiber-coupled light into a strongly guided mode with an evanescent field to trap atoms and then back to a weakly guided mode at the other end of the waveguide. The coupling loss is -1dB per facet (~80% coupling efficiency) at 760nm and 1064nm, which is estimated by a propagation loss measurement with waveguides of different lengths. The proposed platform has good thermal conductance and can guide high optical powers for trapping atoms in ultra-high vacuum. As an intermediate step, we have observed thermal atom absorption of the evanescent component of a nanowaveguide, and have demonstrated the U-wire mirror magneto-optical trap that can transfer atoms to the proximity of the surface.
5 pages, 4 figures in Appl. Phys. Lett. (2015)
References in corpus (8)
- The Quantum Internet
- Mapping photonic entanglement into and out of a quantum memory
- Absolute absorption on the rubidium D lines: comparison between theory and experiment
- Evanescent light-matter Interactions in Atomic Cladding Wave Guides
- Ultra-sensitive surface absorption spectroscopy using sub-wavelength diameter optical fibers
- Observation of two-photon absorption at low power levels using tapered optical fibers in rubidium vapor
- Optically guided linear Mach Zehnder atom interferometer
- Inhomogeneous broadening of optical transitions of 87Rb atoms in an optical nanofiber trap
Cited by in corpus (11)
- Microring resonators on a membrane optical circuit for atom-light interactions
- Dispersive response of atoms trapped near the surface of an optical nanofiber with applications to quantum nondemolition measurement and spin squeezing
- Proposal for stable atom trapping on a GaN-on-Sapphire chip
- Self-organization of atoms coupled to a chiral reservoir
- A perspective on integrated atomo-photonic waveguide circuits
- Towards all-optical atom chips based on optical waveguides
- Characterization of Suspended Membrane Waveguides towards a Photonic Atom Trap Integrated Platform
- On-chip 7 GHz acousto-optic modulators for visible wavelengths
- Protection layers on a superconducting microwave resonator toward a hybrid quantum system
- Demonstration of a MOT in a Sub-Millimeter Membrane Hole
- Intra-atomic frequency comb based photonic quantum memory using single-atom-cavity setup