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Surface Charge Accumulation on PTFE under Magnetic Field

机译:磁场下PTFE上的表面电荷累积

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Polytetrafluoroethylene (PTFE) was employed to investigate the effect of magnetic field on surface charge accumulation. The magnetic field (B) was set to make E×B drift into, away from and parallel to sample surface. An electrostatic probe was designed to measure the surface charge density. The test results showed that surface charge distribution sharply depended upon the magnetic field. When E×B drifted into PTFE, charges deposited in intensive area of the surface, the max charge density was bigger than that without magnetic field. When E×B drifted away from PTFE, charges deposited forming a barrier shape with max charge density bigger than that when E×B drifted into PTFE. When E×B was parallel to PTFE, charge accumulation was flat with max charge density smaller than that without magnetic field. Furthermore, the max charge density increased by varying the magnetic flux density from 70 mT to 140 mT.
机译:采用聚四氟乙烯(PTFE)来研究磁场对表面电荷积累的影响。将磁场(B)设定为使e×B漂移进入,远离并平行于样品表面。设计静电探针以测量表面电荷密度。测试结果表明,表面电荷分布尖锐依赖于磁场。当E×B漂移到PTFE中时,沉积在表面的密集区域中的电荷,最大电荷密度比没有磁场的更大。当E×B从PTFE漂移时,沉积的电荷沉积,形成屏障形状,最大电荷密度大于E×B漂移到PTFE中时的最大电荷密度。当E×B平行于PTFE时,电荷累积具有比没有磁场的最大电荷密度的平坦。此外,通过改变70mt至140mT的磁通密度来增加最大电荷密度。

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