A preliminary investigation is made into a low level accelerometer
incorporating a diamagnetically supported magnet inside a
superconducting tube. Low level control forces are examined and the
magnetic force is found most suitable. Light pressure exerts a
measurable force and is suggested for calibration. The feasibility
of closing a feedback loop around the magnet is demonstrated. The
accelerometer shows much promise for application below 10 (sup -6)g
and the performance results obtained so far are limited only by
displacement detector sensitivity and noisy environment.
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