铟-111人碳酸酐酶I的电子俘获衰变:时间微分K X射线符合扰动角关联研究
医学物理
2007-05-23 v2
摘要
铟-111人碳酸酐酶I(HCA I)的扰动角关联谱中的弛豫效应是化学嬗变和/或铟-111电子俘获衰变后复杂俄歇级联的结果。时间微分K X射线符合扰动角关联(PAC)光谱表明,这些弛豫效应与俄歇级联强度无关。这表明化学嬗变是弛豫效应的原因,并且由俄歇和科斯特-克罗尼格电子局部能量沉积引起的衰变位点周围的键断裂和损伤产物形成可能发生在微秒时间范围内。本文还给出了铟-111 HCA I的时间微分PAC谱中化学嬗变弛豫效应的数值模拟。
引用
@article{arxiv.physics/0302097,
title = {Electron capture decay of indium-111 human carbonic anhydrase I: A time differential K X ray coincidence perturbed angular correlation study},
author = {Christopher Haydock},
journal= {arXiv preprint arXiv:physics/0302097},
year = {2007}
}
备注
Six pages, 3 vector Postscript figures, REVTeX 4 format. The original version is on pages 106-120 in Biophysical Aspects of Auger Processes, AAPM Symposium Proceedings No. 8, edited by R. W. Howell, V. R. Narra, K. S. R. Sastry, and D. V. Rao, AIP, Woodbury, New York, 1992. Figures 2 and 3 of this E-print version are much easier to interpret because they have a ten-fold expanded vertical axis. Over a decade of advances in nuclear technologies make much higher precision experiments feasible today