DocumentCode :
3506561
Title :
Effects of grid parameters on field emission characteristics in triode type CNT X-ray source
Author :
Chang, Won Suk ; Jung, Sunshin ; Seol, Seung Kwon ; Kim, Daeho ; Kim, Beom Seok ; Ju, Byeong-Kwon ; Park, Kyu Chang ; Park, Hun-kuk
Author_Institution :
Adv. Med. Device Res. Center, Korea Electrotechnol. Res. Inst., Ansan, South Korea
fYear :
2012
fDate :
9-13 July 2012
Firstpage :
1
Lastpage :
2
Abstract :
Summary form only given. Field emission X-ray sources have been developed by using carbon nano-tubes (CNT) for diverse applications in fields of biological, medical and material diagnostic technologies. For such applications, it is required to improve the efficiency of field emission for obtaining higher X-ray flux. Previous studies have reported that several parameters, including the aspect ratio of CNT, the inter-tube distance and so on, can influence on the field emission properties of CNT emitter. One of the important factors in field emission of CNT is the field enhancement factor (FEF) which is defined as the ratio of the actual electric field at the apex of CNT and the macroscopic electric field. The FEF of CNT emitter in diode structure depends dominantly on the shape of individual CNT and the pattern of CNT array, whereas the FEF in the triode structure, especially in case of planar type emitter, is modulated by the grid structure, consisting of grid mesh size (i.e., grid mesh pitch, opening area rate, grid mesh line width) and gap distances between grid and CNT emitter. Here, we demonstrate that the grid parameter significantly affects the FEF of the planar type CNT emitter in triode structure. The experimental measurements as well as computer simulation works are performed by adjusting the gap distance and the grid mesh size to interpret characteristics of the field emission from CNT emitters. The results clearly show that the variation of grid structure - a decrease of the grid mesh size and an increase of the gap distance - induces modification of local electric field on individual CNT, resulting in an effective increase of the FEF.
Keywords :
X-ray tubes; carbon nanotubes; electric fields; electron field emission; triodes; C; CNT array; FEF; X-ray flux; biological technology; carbon nanotubes; computer simulation; diode structure; field emission X-ray sources; field emission characteristics; field enhancement factor; gap distance; grid mesh size; grid parameter effect; grid structure; intertube distance; local electric field; macroscopic electric field; material diagnostic technology; medical technology; planar type emitter; triode structure; triode type CNT X-ray source; Biomedical engineering; Carbon dioxide; Educational institutions; Electric fields; Electrical engineering; Medical diagnostic imaging; Nanoscale devices;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Nanoelectronics Conference (IVNC), 2012 25th International
Conference_Location :
Jeju
ISSN :
pending
Print_ISBN :
978-1-4673-1983-6
Electronic_ISBN :
pending
Type :
conf
DOI :
10.1109/IVNC.2012.6316991
Filename :
6316991
Link To Document :
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