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March 1, 2024Review of Scientific Instruments3 citationsOpen Access

Ion trap with in-vacuum high numerical aperture imaging for a dual-species modular quantum computer

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ACAllison L. CarterJOJameson O’ReillyGTGeorge Toh

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Abstract

Photonic interconnects between quantum systems will play a central role in both scalable quantum computing and quantum networking. Entanglement of remote qubits via photons has been demonstrated in many platforms; however, improving the rate of entanglement generation will be instrumental for integrating photonic links into modular quantum computers. We present an ion trap system that has the highest reported free-space photon collection efficiency for quantum networking. We use a pair of in-vacuum aspheric lenses, each with a numerical aperture of 0.8, to couple 10(1)% of the 493 nm photons emitted from a 138Ba+ ion into single-mode fibers. We also demonstrate that proximal effects of the lenses on the ion position and motion can be mitigated.

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Carter et al. (2024) studied this question.

synapsesocial.com/papers/68e7634db6db6435876d96c7https://doi.org/10.1063/5.0180732
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