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Magnetophoretic velocity modulation mass analysis of a single microparticle in an atmosphere

机译:大气中单个微粒的磁致速度调制质量分析

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摘要

A new principle of the magnetophoretic velocity modulation mass analysis of microparticles, which can determine simultaneously the mass and magnetic susceptibility of a single microparticle, has been proposed, and the measurement system was constructed by applying a magnetophoretic force on a falling microparticle through a magnetic field gradient in an atmosphere. A polystyrene microparticle as a test particle adsorbed on a glass plate was selectively knocked off by a pulsed Nd: YAG laser impact into a narrow gap of pole pieces of permanent magnets having a magnetic field gradient with a maximum intensity of 850 T-2 m(-1). The falling particle was irradiated by a He-Ne laser, and the scattered light was detected through a slit array mask as a function of time. A bundle of spiked signals of scattered light intensity was analyzed to obtain velocities, which gave acceleration and deceleration of the falling particle. On the basis of the equation of motion under the magnetic field gradient, the mass and magnetic susceptibility of the test particle were reasonably determined.
机译:提出了微粒的磁致速度调制质量分析的新原理,可以同时确定单个微粒的质量和磁化率,并通过磁场对落下的微粒施加磁致热力来构建测量系统在大气中渐变。通过脉冲Nd:YAG激光冲击选择性地将吸附在玻璃板上的聚苯乙烯微粒击落到具有磁场强度最大为850 T-2 m( -1)。用He-Ne激光照射下落的粒子,并通过狭缝阵列掩模检测散射光与时间的关系。分析了一束散射光强度的尖峰信号以获得速度,该速度给出了下落粒子的加速和减速。根据磁场梯度下的运动方程,合理确定了测试颗粒的质量和磁化率。

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