Return
Continuous dynamical decoupling utilizing time-dependent detuning
DOI:10.1002/prop.201600071.png)
Abstract
En 中文
Resilience to noise and to decoherence processes is an important ingredient for the implementation of quantum information processing, and quantum technologies. To this end, techniques such as pulsed and continuous dynamical decoupling have been proposed to reduce noise effects. In this paper, we suggest a new approach to implementing continuous dynamical decoupling techniques, that uses an extra control parameter; namely, the ability to shape the time dependence of the detuning. This approach reduces the complexity of the experimental setup, such that we are only left with noise originating from the frequency of the driving field, which is much more robust than the amplitude (Rabi frequency) noise. As an example, we show that our technique can be utilized for improved sensing.
Keywords:
Dynamical decoupling
Magnetometer
AI Summary
Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.
Journal
F
IF:
7.8
Papers:
2.0K
Citations:
3.6K
Organization
Cited Papers
Highly selective detection of individual nuclear spins with rotary echo on an electron spin probe
SCIENTIFIC REPORTS
IF3.9
Formation of mountain belts on Venus: Evidence for large-scale convergence, underthrusting, and crustal imbrication in Freyja Montes, Ishtar Terra
Geology
IF0

