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Isotopically Selected Single Antimony Molecule Doping

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arxiv 2509.03243 v1 pith:BNX54SOH submitted 2025-09-03 cond-mat.mtrl-sci quant-ph

classification cond-mat.mtrl-sciquant-ph
keywords siliconmathrmclusterscomputingquantumquditsystemsability
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

A reliable route to the deterministic fabrication of impurity ion donors in silicon is required to advance quantum computing architectures based upon such systems. This paper reports the ability to dope isotopically-defined unique (${}^{121}\mathrm{Sb}{}^{123}\mathrm{Sb}$) clusters into silicon with measured detection efficiencies of 94% being obtained. Atomically resolved imaging of the doped clusters reveals a Sb-to-Sb separation of ~2 nm post-implantation, thus indicating suitability to form coupled qudit systems. The method used is fully compatible with integration into processing that includes pre-enrichment of the silicon host to < 3ppm ${}^{29}\mathrm{Si}$ levels. As such, we present a potential pathway to the creation of scaled qudit arrays within silicon platforms for quantum computing.

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