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Thermally activated state transition technique for femto-Newton-level force measurement

机译:用于飞牛顿级力测量的热激活状态转换技术

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摘要

We develop and test a thermally activated state transition technique for ultraweak force measurement. As a force sensor, the technique was demonstrated on a classical Brownian bead immersed in water and restrained by a bistable optical trap. A femto-Newton-level flow force imposed on this sensor was measured by monitoring changes in the transition rates of the bead hopping between two energy states. The treatment of thermal disturbances as a requirement instead of a limiting factor is the major feature of the technique, and provides a new strategy by which to measure other ultraweak forces beyond the thermal noise limit.
机译:我们开发并测试了用于超弱力测量的热激活状态转换技术。作为力传感器,该技术在浸入水中并受双稳态光阱约束的经典布朗珠上得到了证明。通过监视两种能量状态之间的磁珠跳跃跃迁速率的变化,可以测量施加在该传感器上的毫微牛顿级流动力。该技术的主要特征是将热扰动作为一种要求而不是限制因素进行处理,并且提供了一种新的策略,通过该策略可以测量超出热噪声极限的其他超弱力。

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