A convenient expression of the Green function in LL neutron interferometry

J.P. Guigay
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Abstract

The operation of a two-thick-crystal LL neutron interferometer is strongly dependent on the size of the entrance slit as compared to the “Pendellösung length”. In the case of a narrow slit, the ray-optics formalism breaks down and the intensity profile around the center of the Borrmann fan of the second crystal, where focussing occurs, has to be calculated from the Green function which is the wave function in the observation plane for a point-source of the entrance slit, the different points of this slit being considered as incoherent. This Green function, which takes into account the presence of a test object on the beam path between the crystals, is normally a complicated integral expression. This leads to lengthy numerical calculations. It is shown that for a phase gradient φ between the crsytals, the Green function can be expressed by an expansion in terms of the Bessel functions J2n(&φ;).

l中子干涉测量中格林函数的一种简便表达式
二厚晶体LL中子干涉仪的工作与入口狭缝的尺寸(相对于“Pendellösung长度”)密切相关。在窄狭缝的情况下,射线光学的形式被打破,第二晶体博尔曼扇形中心周围发生聚焦的强度分布必须由格林函数计算,该函数是入口狭缝点源的观测平面中的波函数,该狭缝的不同点被认为是不相干的。考虑到在晶体之间的光束路径上存在测试对象的格林函数通常是一个复杂的积分表达式。这导致了冗长的数值计算。结果表明,对于晶体之间的相位梯度φ,格林函数可以用贝塞尔函数J2n(&φ;)展开来表示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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