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用于减小其有效波带周期的波带片近场叠加

Near field stacking of zone plates for reduction of their effective zone period.

作者信息

Rehbein Stefan, Lyon Alan, Leung Raymond, Feser Michael, Schneider Gerd

出版信息

Opt Express. 2015 May 4;23(9):11063-72. doi: 10.1364/OE.23.011063.

Abstract

Here we analyze the potential of a new fabrication method for high resolution zone plates with high aspect ratios based on near field stacking of frequency doubled atomic layer deposited (ALD) zone plates. The proposed method enables reduction of the effective zone period by a factor of four with two zone plate layers compared to the initial e-beam lithography exposed outermost zone period. It also overcomes the problem that very small zone widths with high aspect ratios have to be fabricated for high-resolution hard X-ray microscopy. Using rigorous coupled wave theory, we have analyzed the diffraction behavior of these near field stacked zone plates and investigated strategies to optimize fabrication parameters to compensate for separation of stacked zone plates. The calculations performed for 8 keV photon energy and effective outermost zone widths of 28 nm and 15 nm predict diffraction efficiencies ≥ 20% suggesting that such optics could find widespread practical applications.

摘要

在此,我们分析了一种基于倍频原子层沉积(ALD)波带片近场堆叠的高纵横比高分辨率波带片新制造方法的潜力。与最初电子束光刻曝光的最外层波带周期相比,所提出的方法通过两个波带片层可将有效波带周期减小四倍。它还克服了高分辨率硬X射线显微镜必须制造具有高纵横比的非常小的波带宽度这一问题。利用严格耦合波理论,我们分析了这些近场堆叠波带片的衍射行为,并研究了优化制造参数以补偿堆叠波带片间距的策略。针对8 keV光子能量以及28 nm和15 nm的有效最外层波带宽度所进行的计算预测,衍射效率≥20%,这表明此类光学元件可找到广泛的实际应用。

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