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Optical coherence tomography (OCT) with 2 nm axial resolution using a compact laser plasma soft X-ray source

机译:使用紧凑型激光等离子体软X射线源的2 axialnm轴向分辨率的光学相干断层扫描(OCT)

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摘要

We present optical coherence tomography (OCT) with 2 nm axial resolution using broadband soft X-ray radiation (SXR) from a compact laser plasma light source. The laser plasma was formed by the interaction of nanosecond laser pulses with a gaseous target in a double stream gas puff target approach. The source was optimized for efficient SXR emission from the krypton/helium gas puff target in the 2 to 5 nm spectral range, encompassing the entire “water-window” spectral range from 2.3 nm to 4.4 nm wavelength. The coherence parameters of the SXR radiation allowed for the OCT measurements of a bulk multilayer structure with 10 nm period and 40% bottom layer thickness to period ratio, with an axial resolution of about 2 nm and detect multilayer interfaces up to a depth of about 100 nm. The experimental data are in agreement with OCT simulations performed on ideal multilayer structure. In the paper, detailed information about the source, its optimization, the optical system, OCT measurements and the results are presented and discussed.
机译:我们使用紧凑型激光等离子光源的宽带软X射线辐射(SXR)提出了2 nm轴向分辨率的光学相干断层扫描(OCT)。激光等离子体是通过在双流气扑靶方法中纳秒激光脉冲与气态靶相互作用而形成的。该光源经过优化,可在2至5µnm的光谱范围内从from /氦气粉扑目标物有效地发射SXR,涵盖了从2.3µnm至4.4µnm波长的整个“水窗”光谱范围。 SXR辐射的相干参数可用于以10µnm周期和40%底层厚度与周期比的体多层结构进行OCT测量,其轴向分辨率约为2μnm,并可以检测到深度约100的多层界面纳米实验数据与在理想多层结构上进行的OCT模拟一致。在本文中,将介绍和讨论有关光源,其优化,光学系统,OCT测量和结果的详细信息。

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