欢迎登录材料期刊网

材料期刊网

高级检索

本文分析了金刚石薄膜作为粒子探测器的优势和劣势,介绍了金刚石薄膜粒子探测器的机理和电极结构、"探测器级"金刚石薄膜的主要制备方法和金刚石薄膜粒子探测器的发展水平.同时报道了我们制备的金刚石薄膜探测器在X射线和α粒子辐照下的响应测试结果,并分析了实现高性能探测器的障碍.

参考文献

[1] Qi Ming, Du Shengwang, Wang Xiaohua. The Monte-Carlo simulation for detective performance of Si micro-strip detector [J]. Journal of Nanjing Univrsity (Natural Sciences) (南京大学学报), 1997, 33:527-534 (in Chinese)
[2] Vatnitsky S, Jarvinen H. Application of a natural diamond detector for the measurement of relative dose distributions in radiotherapy [J]. Phys. Med. Biol., 1993, 38:173-184
[3] Sellin P J, Mark B H. Breese spectroscopic response of coplanar diamond α particle detectors [J]. IEEE Transactions on Nuclear Science, 2001, 48(6): 2307-2312
[4] Behnke T, et al. Charge collection properties of CVD diamond [J]. Nucl. Instr. Meth. In Phys. Res., 1998,A414:340-356
[5] Jang C, et al. Influence of CVD diamond film textures on the electrical response of radiation detectors [J]. Nucl.Instr. Meth. In Phys. Res., 1996, A380:107-111
[6] Manfredotti C, et al. CVD diamond detectors [J]. Nucl. Instr. Meth. In Phys. Res., 1998, A410:96-99
[7] Weilhammer P, et al. Recent results on CVD diamond sensors [J]. Nucl. Instr. Meth. In Phys. Res., 1998, A409:264-270
[8] Borchi E, et al. Characterization of diamond detectors prepared by DC plasma glow discharge CVD [J]. Nucl.Instr. Meth. In Phys. Res., 1998, A409:240-242
[9] Wild C, Koidl P, Muller-Sebert W, et al. Chemical vapour deposition and characterization of smooth (100)-faceted diamond films [J]. Diamond and Relat. Mater., 1993, 2:158-168
[10] Wild C, Kohl R, Herres N, et al. Oriented CVD diamond films: twin formation, structure and morphology [J].Diamond and Relat. Mater., 1994, 3:373-381
[11] Fox B A, Stoner B R, Malta D M, et al. Epitaxial nucleation, growth and characterization of highly oriented,(100)-textured diamond films on sillicon [J]. Diamond and Relat. Mater., 1994, 3:382-387
[12] Donatoa M G, Faggioa G, Marinellib M, et al. High auality CVD diamond for detection applications: structural characterization [J]. Diamond and Relat. Mater., 2001, 10:1788-1793
[13] Hana S K, McClurea M T, Woldenb C A, et al. Sitar fabrication and testing of a microstrip particle detector based on highly oriented diamond films [J]. Diamond and Relat Mater., 2000, 9:1008-1012
[14] Wolden C A, Sitar Z, Davis R E, et al. Textuted diamond growth by low pressure flat flame chemical vapor deposition [J]. Appl. Phys. Lett., 1996, 69(15): 2258
[15] Galbiatia A, Breesea M B H, et al. Characterisation of a coplanar CVD diamond radiation detector [J]. Nucl.Instr. Meth. In Phys. Res., 2001, 466, 52-57
[16] Shu Deming, Job P K, Barraza J, et al. Detector for high-flux x-rays and gamma rays [J]. CVD-Diamond-based Position Sensitive Photoconductive
[17] Wang S G, Zhang Q, et al. Investigation on polycrystalline CVD diamond-based alpha-particle detectors [J].Material Research Bulletin, 2002, 37(6): 1033-1040
[18] Marinelli M, Milani E, Paoletti A, et al. High collection efficiency in chemical vapor deposited diamond particle detectors [J]. Diamond and Relat. Mater., 2000, 9:998-1002
[19] Pan C H, et al. Electronic Spectrum Foundation (电子能谱基础) [M]. Beijing: Scientific Publication House, 1981.15, 13 (in Chinese)
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%