닫기
216.73.216.163
216.73.216.163
close menu
Hgl2의 누설전류 저감을 위한 다층구조 제작 및 특성 평가
The Multi-layer Fabrication and Characteristic Performance for Dark Current Reduction of Mercury Iodide
김경진 ( Kyung Jin Kim ) , 박지군 ( Ji Koon Park ) , 강상식 ( Sang Sik Kang ) , 차병열 ( Byung Youl Cha ) , 조성호 ( Sung Ho Cho ) , 김진영 ( Jin Yung Kim ) , 문치웅 ( Chi Ung Mun ) , 남상희 ( Sang Hee Nam )
UCI I410-ECN-0102-2015-500-001803034
이 자료는 4페이지 이하의 자료입니다.

In this paper, the electric properties of mercury Iodide multi-layer samples has been investigated. We measured and analyzed their performance parameters such as the X-ray sensitivity and dark-current for a mercury Iodide multi-layer X-ray detector with a dielectric layer. The digital X-ray image detector can be constructed by integrating photoconduction multi-layer that dielectric layer has characteristics of low dark-current, high X-ray sensitivity. However this process has found to have complexity on the performance of the sample. We have investigate dielectric layer that it substitute dielectric layer for HgO(Mercury Oxide). We have employed two approaches for producing the mercury Iodide sample : 1) Physical Vapor Deposition(PVD) and 2) Particle-In-Binder(PIB). In this paper fabricated by PIB Method with thicknesses ranging from approximately 180um to 240um and we could produce high-quality samples for each technique particular application. As results, the dielectric materials such as HgO between the dielectric layer and the top electrode may reduce the dark-current of the samples. Mercury Iodide multi-layer having HgO has characteristics of low dark-current, high X-ray sensitivity and simple processing. So we can acquired a enhanced signal to noise ratio. In this paper offer the method can reduce the dark-current in the X-ray detector.

[자료제공 : 네이버학술정보]
×