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The initial processing of the gas electron diffraction data: New method for simultaneous determination of the sector function and electron wavelength from gas standard data

机译:气体电子衍射数据的初步处理:从气体标准数据同时测定扇形函数和电子波长的新方法

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摘要

The accuracy of the routine investigations by the modern gas-phase electron diffraction method is no more than 0.1%. The full error of parameters determination consists of several contributions including the scale error and the errors in sector function. For correction of the scale error and estimation of the sector function, the gas standard method is used in gas electron diffraction. We have developed the new method for simultaneous determination of the electron wavelength and the sector function from the intensity curves of the gas standards. The new method allows to achieve the electron wavelength precision of about 0.02-0.05%. The distinguishing feature of the new method is the use of several intensity curves for determination of the sector function, resulting in an increase of the reliability of the sector function determination. The additional information from alternative determinations of sector function can be also used for regularization. (c) 2007 Elsevier B.V. All rights reserved.
机译:用现代气相电子衍射法进行常规研究的准确性不超过0.1%。参数确定的全部误差由几个因素组成,包括比例误差和扇区函数误差。为了校正比例误差和估计扇形函数,在气体电子衍射中使用了气体标准方法。我们已经开发了一种新方法,可以根据气体标准的强度曲线同时确定电子波长和扇形函数。新方法可以实现约0.02-0.05%的电子波长精度。新方法的显着特征是使用多个强度曲线来确定扇区函数,从而提高了扇区函数确定的可靠性。来自扇区功能的替代确定的附加信息也可以用于正则化。 (c)2007 Elsevier B.V.保留所有权利。

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