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The true nature of space-charge-limited currents in electron vacuum diodes: A Lagrangian revision with corrections

机译:电子真空二极管中空间电荷限制电流的真实性质:经过修正的拉格朗日修正

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摘要

The physics of space-charge-limited current (J(SCL)) in diodes with finite electron injection velocities v(0) is investigated within the Lagrangian flow description. The space-charge-limited (SCL) current is shown to be given by J(SCL)=(X+root1+X-2)(3)J(CL), where J(CL)similar toU(3/2)/L-2 is the familiar Child-Langmuir current, X=(mv(0)(2)/2eU)(1/2), U and L are the diode voltage and length, respectively. It results from an intrinsic property of the diode rather than from electron reflexion, the current picture of SCL accepted since Langmuir's days. For field emitted electrons, on the other hand, J(CL) is proved to be universally valid, because in this case v(0)=0 holds. A number of further diode properties are derived analytically and presented numerically. (C) 2001 American Institute of Physics. [References: 51]
机译:在拉格朗日流量描述中研究了具有有限电子注入速度v(0)的二极管中的空间电荷限制电流(J(SCL))的物理性质。空间电荷限制(SCL)电流显示为由J(SCL)=(X + root1 + X-2)(3)J(CL)给出,其中J(CL)类似于U(3/2) / L-2是熟悉的Child-Langmuir电流,X =(mv(0)(2)/ 2eU)(1/2),U和L分别是二极管电压和长度。这是由于二极管的固有特性,而不是由于电子反射,这是Langmuir时代以来接受的SCL的当前情况。另一方面,对于场发射电子,证明了J(CL)普遍有效,因为在这种情况下v(0)= 0成立。通过分析得出许多其他的二极管特性,并用数字表示。 (C)2001美国物理研究所。 [参考:51]

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