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Energy distribution of electrons under axial motion in a quadrupole Penning trap

机译:四极潘宁阱中轴向运动下电子的能量分布

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We present results of the energy distribution function of trapped electrons through a measurement of their axial oscillation in a quadrupole Penning trap. Electrons emitted from a thoriated tungsten filament with a range of energies (3-5 eV) are trapped in a low magnetic field quadrupole Penning trap. Subsequent to storage the trapped electrons are detected through monitoring their axial oscillations by an electronic tank circuit that is weakly coupled to the trap, by resonant energy transfer to the electrons. The technique, developed using LabVIEW, enables a direct measurement of the energy distribution function of the electrons in the trap. We obtain a normal distribution of energy, with a maximum that coincides with the potential applied on the electron filament, indicating that the energy distribution of electrons in the trap reflects the energy distribution of the thermionically emitted electrons from the filament.
机译:我们通过捕获电子在四极杆Penning陷阱中的轴向振动的测量,给出了能量分布函数的结果。从th化钨丝发出的具有一定范围能量(3-5 eV)的电子被捕获在低磁场四极潘宁阱中。在存储之后,通过与谐振器弱耦合的电子储能电路,通过共振能量转移到电子,通过监视它们的轴向振荡来检测被捕获的电子。该技术是使用LabVIEW开发的,可以直接测量陷阱中电子的能量分布函数。我们获得能量的正态分布,其最大值与施加在电子灯丝上的电势相符,这表明陷阱中电子的能量分布反映了从灯丝以热电子方式发射的电子的能量分布。

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