arXiv · 1506.04826
Resolving Remoter Nuclear Spins in a Noisy Bath by Dynamical Decoupling Design
Abstract
We experimentally resolve several weakly coupled nuclear spins in diamond using a series of novelly designed dynamical decoupling controls. Some nuclear spin signals, hidden by decoherence under ordinary dynamical decoupling controls, are shifted forward in time domain to the coherence time range and thus rescued from the fate of being submerged by the noisy spin bath. In this way, more and remoter single nuclear spins are resolved. Additionally, the field of detection can be continuously tuned on sub-nanoscale. This method extends the capacity of nanoscale magnetometry and may be applicable in other systems for high-resolution noise spectroscopy.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Wenchao Ma, Fazhan Shi, Kebiao Xu, Pengfei Wang, Xiangkun Xu, Xing Rong, Chenyong Ju, Chang-Kui Duan, Nan Zhao, Jiangfeng Du. 2015-06-16. Resolving Remoter Nuclear Spins in a Noisy Bath by Dynamical Decoupling Design. https://doi.org/10.1103/physreva.92.033418
Cite the original work for its findings. Save a collection to share your selection of sources.