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Fresnel diffractograms from pure-phase wave fields under perfect spatio-temporal coherence: Non-linearon-local aspects and far-field behavior

机译:完美时空相干下纯相波场的菲涅耳衍射图:非线性/非局部方面和远场行为

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Recently, the diffractogram, that is, the Fourier transform of the intensity contrast induced by Fresnel free-space propagation of a given (exit) wave field, was investigated non-perturbatively in the phase-scaling factor S (controlling the strength of phase variation) for the special case of a Gaussian phase of width $$sqrt{{f{w}}}$$ w . Surprisingly, an additional low-frequency zero σ*?=?σ*(S, F) 0 emerges critically at small Fresnel number F (σ proportional to square of 2D spatial frequency). Here, we study the S-scaling behavior of the entire diffractogram. We identify a valley of maximum S-scaling linearity in the F???σ plane corresponding to a nearly universal physical frequency ξml?=?(0:143?±?0.001)w ?1/2. Large values of F (near field) are shown to imply S-scaling linearity for low σ but nowhere else (overdamped non-oscillatory). In contrast, small F values (far field) entail distinct, sizable s-bands of good S-scaling linearity (damped oscillatory). These bands also occur in simulated diffractograms induced by a complex phase map (Lena). The transition from damped oscillatory to overdamped non-oscillatory diffractograms is shown to be a critical phenomenon for the Gaussian case. We also give evidence for the occurrence of this transition in an X-ray imaging experiment. Finally, we show that the extreme far-field limit generates a σ-universal diffractogram under certain requirements on the phase map: information on phase shape then is solely encoded in S-scaling behavior.
机译:最近,在相位缩放因子S(控制相位变化的强度)中,非扰动地研究了衍射图,即给定(出口)波场的菲涅耳自由空间传播引起的强度对比的傅立叶变换。 )用于宽度为$$ sqrt {{ bf {w}}} $$ w的高斯相位的特殊情况。令人惊讶地,在小的菲涅耳数F(σ与2D空间频率的平方成比例)时,临界的另一个低频零σ*?=?σ*(S,F)> 0出现。在这里,我们研究整个衍射图的S缩放行为。我们在Fσσ平面上确定了一个最大的S标度线性度的谷,它对应于几乎通用的物理频率ξml 1 =α(0:143α±α0.001)wβ1/2。较大的F(近场)值表明对于低σ而言,它表示S标度线性,但在其他地方则没有(过度阻尼的非振荡性)。相反,小的F值(远场)需要具有良好的S缩放线性度(阻尼振荡)的不同的,相当大的s带。这些谱带也出现在由复杂相图(Lena)引起的模拟衍射图中。对于高斯情况,从阻尼振荡到非阻尼非振荡衍射图的过渡是一个关键现象。我们还提供了在X射线成像实验中发生这种转变的证据。最后,我们表明,在相图上的某些要求下,极端远场极限会生成σ通用衍射图:关于相形状的信息仅在S缩放行为中编码。

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