[1] 李晓苇, 胡小永, 傅广生, 杨少鹏, 张连水, 董丽芳, Li Xiaowei, HU Xiaoyong, Fu Guangsheng, Yang Shaopeng, Zhang Lianshui, Dong Lifang. 电子陷阱对光电子的影响 [J]. 信息记录材料 2001.doi:10.3969/j.issn.1009-5624.2001.02.010 [2] 戴晖, 梁冰, 庄思永, DAI Hui, LIANG Bing, ZHUANG Si-Yong. 卤化银乳剂制备中的新型掺杂剂 [J]. 感光科学与光化学 2001.doi:10.3969/j.issn.1674-0475.2001.01.010 [3] Gurney R W, MOTT N F. Theory of the photolysis of silver bromide and the photographic latent image [J]. Proceedings of the Royal Society of London 1938, 164. [4] Hamilton J F. A modified proposal for the mechanism of sulfur sensitization in terms of capture cross [J]. Journal of Photographic Science 1983, 27(06). [5] Hailstone R K. Computer simulation studies of silver cluster formation on AgBr microcrystals [J]. Journal of Physical Chemistry 1995, 99(13). [6] Mott N F, GURNEY R W. Electronic processes in ionic crystals [M]. London:Oxford Univ press 1940. [7] Farnell G C, FLINT R B. Direct observations on the distribution of silver sulphide of sensitized emulsion Grains [J]. Journal of Physical Chemistry 1976, 24. [8] James T H. The Theory of the Photographic Process [M]. New York:Macmillan 1977. [9] Kaneda T. A new approach to estimation of depth of electron traps in AgBr emulsion grains on the basis of the gurney-mott model [J]. Journal of Imaging Science 1989, 33(04). [10] Bube R H. Electronic properties of crystalline solids [M]. New York:Academic Press 1974. [11] Mussig T.. PRINCIPLES OF MICROWAVE ABSORPTION TECHNIQUE APPLIED TO AGX MICROCRYSTALS [J]. Journal of Imaging Science and Technology 1997, 2(2). [12] HAMILTON J F. The physics of latent image formation in silver halides [A]. Singapore:World Scientific 1984. |