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arxiv: 2606.02560 · v1 · pith:AJWUJ3CYnew · submitted 2026-06-01 · ⚛️ physics.atom-ph · cond-mat.quant-gas· physics.app-ph· physics.optics· quant-ph

A Mid-Infrared Platform Based on Strontium Tweezer Arrays

classification ⚛️ physics.atom-ph cond-mat.quant-gasphysics.app-phphysics.opticsquant-ph
keywords arraysemissiontweezeratomsplatformstrontiumbeencollective
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Subwavelength atomic tweezer arrays, in which atoms can be positioned at distances smaller than their emission wavelength, have been proposed as a versatile platform to study collective emission phenomena, such as superradiance and subradiance. Experimentally, the realization of such arrays has been a challenge as typical emission wavelengths in the visible or near-infrared are short compared to typical tweezer spacings in the micrometer range. Here, we use $^{88}$Sr atoms in optical tweezer arrays to access a mid-infrared transition at 2,923 nm ($5s5p\:^{3}P_{2} \rightarrow\, 5s4d\:^{3}D_{3}$). We identify a magic trapping wavelength at 597.14(3) nm and demonstrate single-atom preparation and imaging with high fidelity. In addition, using 2,923 nm light, we demonstrate resolved-sideband cooling of tweezer-trapped strontium. Beyond enabling studies of collective emission phenomena in flexible arrangements of atoms, our platform opens novel opportunities for dipolar many-body physics and enhanced control over Rydberg dynamics and the strontium fine-structure qubit.

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