DOE OSTI · 2421057
Reporter-Spin-Assisted T 1 Relaxometry
Abstract
A single-spin quantum sensor can quantitatively detect and image fluctuating electromagnetic fields via their effect on the sensor spin’s relaxation time, thus revealing important information about the target solid-state or molecular structures. However, the sensitivity and spatial resolution of spin relaxometry are often limited by the distance between the sensor and target. Here, we propose an alternative approach that leverages an auxiliary reporter spin in conjunction with a single-spin sensor, a diamond nitrogen-vacancy (N-V) center. We show that this approach can realize a 100-fold measurement sensitivity improvement for realistic working conditions and we experimentally verify the proposed method using a single shallow N-V center. Our work opens up a broad path of inquiry into a range of possible spin systems that can serve as relaxation sensors without the need for optical initialization and readout capabilities.
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Zhang, Zhiran, Joos, Maxime, Bluvstein, Dolev, Lyu, Yuanqi, Bleszynski Jayich, Ania C.. 2023-03-16. Reporter-Spin-Assisted T 1 Relaxometry. https://doi.org/10.1103/physrevapplied.19.l031004
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