Rubidium atomic clock with drift compensation
Leonardo Trigo, Daniel Slomovitz
Abstract
Leonardo Trigo, Daniel Slomovitz
Abstract
This paper shows the results of an automatic system that compensates drifts of rubidium atomic clocks, comparing to GPS. This leads to high stability in large time and low noise in short time.
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This paper shows the results of an automatic system that compensates drifts of rubidium atomic clocks, comparing to GPS. This leads to high stability in large time and low noise in short time.
Key concepts: Rubidium, Atomic clock, Compensation (psychology), Global Positioning System, Noise (video), Stability (learning theory), Computer science, Physics