1. Nuclear Spin Gyroscope based on the Nitrogen Vacancy Center in Diamond
- Author
-
Andrey N. Smolyaninov, Vladimir V. Soshenko, Olga R. Rubinas, Vadim V. Vorobyov, Alexey V. Akimov, Vadim N Sorokin, and Stepan V. Bolshedvorskii
- Subjects
Physics ,Quantum Physics ,Spins ,business.industry ,General Physics and Astronomy ,Diamond ,FOS: Physical sciences ,Gyroscope ,engineering.material ,Rotation ,01 natural sciences ,law.invention ,law ,Vacancy defect ,0103 physical sciences ,engineering ,Optoelectronics ,010306 general physics ,business ,Nitrogen-vacancy center ,Quantum Physics (quant-ph) ,Realization (systems) ,Inertial navigation system - Abstract
A rotation sensor is one of the key elements of inertial navigation systems and compliments most cell phone sensor sets used for various applications. Currently, inexpensive and efficient solutions are mechanoelectronic devices, which nevertheless lack long-term stability. Realization of rotation sensors based on spins of fundamental particles may become a drift-free alternative to such devices. Here, we carry out a proof-of-concept experiment, demonstrating rotation measurements on a rotating setup utilizing nuclear spins of an ensemble of nitrogen vacancy centers as a sensing element with no stationary reference. The measurement is verified by a commercially available microelectromechanical system gyroscope.
- Published
- 2020