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首页> 外文期刊>Physica, B. Condensed Matter >Peak overlapping and its de-convolution in TOF diffraction data from neutron biological diffractometer in J-PARC
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Peak overlapping and its de-convolution in TOF diffraction data from neutron biological diffractometer in J-PARC

机译:J-PARC中子生物衍射仪在TOF衍射数据中的峰重叠及其反褶积

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The TOF neutron biological diffractometer in J-PARC proposed by Ibaraki prefectural government is designed to cover the sample crystals which have their cell edges up to 135 A, and to realize the efficiency which is more than 50 times larger than the present high performance diffractometers, BIX-3 and BIX-4 in JRR-3 reactor in JAERI. To achieve this performance, the diffractometer will be installed on a coupled moderator which has more intense peak and integrated intensity but wider pulse shape than a decoupled moderator. It is expected that some neighbor Bragg spots will overlap partially each other along the time-axis. It is necessary to deconvolute the overlapped spots in order to obtain a data set which has a quality good enough to identify hydrogen atoms in biological macromolecules. The original simulation programs of TOF diffraction data with designed parameters of the diffractometer were developed to obtain information of spot-overlapping and then to find the best procedure to de-convolute the overlapped spots. The strategy of de-convoluting overlapped Bragg spots will be reported based on the results of the simulations. (c) 2006 Elsevier B.V. All rights reserved.
机译:茨城县政府提出的J-PARC中的TOF中子生物衍射仪旨在覆盖晶胞边缘高达135 A的样品晶体,并实现比目前的高性能衍射仪大50倍以上的效率, JAERI的JRR-3反应器中的BIX-3和BIX-4。为了实现这一性能,衍射仪将安装在耦合减速器上,该耦合减速器具有比解耦减速器更强的峰值和积分强度,但脉冲形状更宽。预期一些相邻的布拉格点将在时间轴上彼此部分重叠。有必要对重叠的点进行去卷积以获得具有足以识别生物大分子中氢原子的质量的数据集。开发了具有衍射仪设计参数的TOF衍射数据的原始模拟程序,以获得斑点重叠的信息,然后找到对重叠斑点进行去卷积的最佳方法。将基于仿真结果报告对重叠的布拉格点进行去卷积的策略。 (c)2006 Elsevier B.V.保留所有权利。

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