To achieve a better understanding of the effects of the colossal magnetoresistivity in the mixed valence manganites,the model of a negative magnetoresistivity scaling proposed by Wagner et al is explored in both mat...To achieve a better understanding of the effects of the colossal magnetoresistivity in the mixed valence manganites,the model of a negative magnetoresistivity scaling proposed by Wagner et al is explored in both mathematical and physical analyses.The inconsistency in Wagners model is discussed and corrected. The behaviors of the large spin polarons in Nd 0.52 Sr 0.48 MnO 3 film at T c are studied and analyzed.The results show that only through necessary corrections can Wagners model become self consistent. A further exploration of the nature of the magnetically aligned clusters will make the model more convincing.展开更多
X射线水吸收剂量是辐射剂量学的重要物理量,它的精确测量在放射治疗中至关重要。开展低能X射线水吸收剂量的研究与测量,可为完善水吸收剂量溯源体系及扩宽计量部门校准范围提供重要技术支持。确定低能X射线水吸收剂量的测量方法,在辐射...X射线水吸收剂量是辐射剂量学的重要物理量,它的精确测量在放射治疗中至关重要。开展低能X射线水吸收剂量的研究与测量,可为完善水吸收剂量溯源体系及扩宽计量部门校准范围提供重要技术支持。确定低能X射线水吸收剂量的测量方法,在辐射场中使用PTW23344电离室对10-50 k V的治疗水平辐射质下的X射线水吸收剂量进行了测量。最终得到了电离室的水吸收剂量刻度因子N_D以及厚度为6 cm有机玻璃前表面的水吸收剂量D_W。本项工作为建立国内X射线水吸收剂量标准及进行国际比对提供了条件和基础。展开更多
基金National Natural Science Foundation of China(No.50 0 72 0 1 5) Key Teacher Supporting Project (G0 0 0 32 ) +1 种基金StartingFoundation for Returned ResearchersKey Projectof Science andTechnology Research of National Education Committee
文摘To achieve a better understanding of the effects of the colossal magnetoresistivity in the mixed valence manganites,the model of a negative magnetoresistivity scaling proposed by Wagner et al is explored in both mathematical and physical analyses.The inconsistency in Wagners model is discussed and corrected. The behaviors of the large spin polarons in Nd 0.52 Sr 0.48 MnO 3 film at T c are studied and analyzed.The results show that only through necessary corrections can Wagners model become self consistent. A further exploration of the nature of the magnetically aligned clusters will make the model more convincing.
文摘X射线水吸收剂量是辐射剂量学的重要物理量,它的精确测量在放射治疗中至关重要。开展低能X射线水吸收剂量的研究与测量,可为完善水吸收剂量溯源体系及扩宽计量部门校准范围提供重要技术支持。确定低能X射线水吸收剂量的测量方法,在辐射场中使用PTW23344电离室对10-50 k V的治疗水平辐射质下的X射线水吸收剂量进行了测量。最终得到了电离室的水吸收剂量刻度因子N_D以及厚度为6 cm有机玻璃前表面的水吸收剂量D_W。本项工作为建立国内X射线水吸收剂量标准及进行国际比对提供了条件和基础。