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1)  photo-emitted electron
光致发射电子
2)  cathodoluminescence
电子致发光
3)  photoneutron emission
光致中子发射
4)  field-enhanced photoelectric emission
场致光电发射
5)  field emission
场致电子发射
1.
The field emission properties were tested by using a diode structure in a vacuum chamber.
测试了类球状微米金刚石聚晶膜的场致电子发射特性。
2.
The field emission cathode was fabricated with a simple screen printing method.
采用丝网印刷方法将其制备为场致电子发射阴极,将阴极与印刷有荧光粉的阳极板组装成二极结构场致发射显示屏,并进行了场致电子发射特性对比实验。
3.
Recently, a number of experiments and theoretical researches have showed that diamond thin films,especially nanocrystalline diamond thin films, could emit electrons at very low fields, and be well suited for field emission cold cathode which is applied in many field emission applications, such as microwave vacuum devices and field emission displays.
近年来 ,国内外不断有实验和理论研究表明,金刚石薄膜特别是纳米晶金刚石薄膜,在低的开启电压作用下,即可获得很高的场致发射电流密度,具有十分优秀的场致电子发射特性,是一种理想的场致发射阴极材料。
6)  field electron emission
场致电子发射
1.
Fullerene-like nano-crystalline CN_x films and its characteristics of field electron emission;
类富勒烯纳米晶CN_x薄膜及其场致电子发射特性
2.
The graphite-like film was prepared on silicon substrate by pulsed laser ablation, and the field electron emission from the film was measured.
利用脉冲激光烧蚀技术在硅衬底上制备了类石墨薄膜,以该薄膜为阴极进行了场致电子发射实验。
3.
Prebreakdown was observed under field electron emission experiments from amorphous carbon-polyimide films which were firstly deposited on silicon substrate with high electrical conductivity by pulse laser deposition.
利用脉冲激光沉积技术(PulsedLaserDeposition)首次制备出非晶碳-聚酰亚胺复合薄膜,用其做为冷阴极,观察到其场致电子发射的预击穿现象,预击穿后阈值场强为7V/μm,最大发射电流密度为1。
补充资料:光致致
1.有光泽而细腻貌。
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