A micro-optical module for multi-wavelength addressing of trapped ions

Author:

Day Matthew LORCID,Choonee Kaushal,Chaboyer Zachary,Gross Simon,Withford Michael J,Sinclair Alastair GORCID,Marshall Graham D

Abstract

Abstract The control of large-scale quantum information processors based on arrays of trapped ions requires a means to route and focus multiple laser beams to each of many trapping sites in parallel. Here, we combine arrays of fibres, 3D laser-written waveguides and diffractive microlenses to demonstrate the principle of a micro-optic interconnect suited to this task. The module is intended for use with an ion microtrap of 3D electrode geometry. It guides ten independent laser beams with unique trajectories to illuminate a pair of spatially separated target points. Three blue and two infrared beams converge to overlap precisely at each desired position. Typical relative crosstalk intensities in the blue are 3.6 × 10−3 and the average insertion loss across all channels is 8 dB. The module occupies ∼104 times less volume than a conventional bulk-optic equivalent and is suited to different ion species.

Funder

Department for Business, Energy and Industrial Strategy, UK Government

Engineering and Physical Sciences Research Council

New South Wales Government

Australian Research Council

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Physics and Astronomy (miscellaneous),Materials Science (miscellaneous),Atomic and Molecular Physics, and Optics

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