Title :
Influence of ion effects on relativistic field-emission-limited diodes
Author_Institution :
Dept. of Phys., Fu Jen Univ., Taipei, Taiwan
Abstract :
In a previous work, we investigated a relativistic field-emission-limited diode employing a high-transparency mesh anode via a self-consistent approach (M.C. Lin and D.S. Chuu, IVEC 2002, pp. 111-112, 2002, and Appl. Phys. Lett. vol. 80, pp. 4262-4264, 2002). Ionization effects at the high-transparency mesh anode were ignored. However, the ionization effects at the anode cannot be eliminated in the real world, even for the high-transparency mesh anode. It is well known that the emergence of upstream ion current would enhance the space-charge limiting current. In this work, we consider the anode plasma effects on the relativistic field-emission-limiting current. Thus, the previous theory is extended to the bipolar field-emission-limited flow. The ion current has been included in the relativistic Poisson´s equation and has been treated as a tuning parameter.
Keywords :
Poisson equation; anodes; diodes; electric current; field emission; ionisation; plasma interactions; relativistic electron beams; space charge; anode plasma effects; bipolar field-emission-limited flow; high-transparency mesh anode; ion effects; mesh anode ionization effects; relativistic Poisson´s equation; relativistic field-emission-limited diodes; relativistic field-emission-limiting current; space-charge limiting current; tuning parameter; upstream ion current; Anodes; Cathodes; Current density; Electrons; Ionization; Plasma density; Plasma properties; Poisson equations; Schottky diodes; Voltage;
Conference_Titel :
Vacuum Electronics Conference, 2004. IVEC 2004. Fifth IEEE International
Print_ISBN :
0-7803-8261-7
DOI :
10.1109/IVELEC.2004.1316275