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Single-Shot Readout and Weak Measurement of a Tin-Vacancy Qubit in Diamond

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arxiv 2403.13110 v2 pith:S7PCRDAB submitted 2024-03-19 quant-ph

classification quant-ph
keywords spinmeasurementquantumdiamondreadoutcoherencecontrolelectronic
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abstract

The negatively charged tin-vacancy center in diamond (SnV$^-$) is an emerging platform for building the next generation of long-distance quantum networks. This is due to the SnV$^-$'s favorable optical and spin properties including bright emission, insensitivity to electronic noise, and long spin coherence times at temperatures above 1 Kelvin. Here, we demonstrate measurement of a single SnV$^-$ electronic spin with a single-shot readout fidelity of $87.4\%$, which can be further improved to $98.5\%$ by conditioning on multiple readouts. We show this performance is compatible with rapid microwave spin control, demonstrating that the trade-off between optical readout and spin control inherent to group-IV centers in diamond can be overcome for the SnV$^-$. Finally, we use weak quantum measurement to study measurement induced dephasing; this illuminates the fundamental interplay between measurement and decoherence in quantum mechanics, and makes use of the qubit's spin coherence as a metrological tool. Taken together, these results overcome an important hurdle in the development of the SnV$^-$ based quantum technologies, and in the process, develop techniques and understanding broadly applicable to the study of solid-state quantum emitters.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. High-cooperativity coupling and spin-resolved extinction of tin-vacancy centers in a diamond-like microcavity

    quant-ph 2026-08 conditional novelty 7.0 of 10

    A tunable open microcavity with ultra-smooth diamond membranes achieves coherent cooperativity 4.0 and 91% spin-resolved extinction with tin-vacancy centers.

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