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Uncovering phase maps from surface plasmon resonance images: Towards a sub-wavelength resolution

机译:从表面等离振子共振图像中发现相位图:迈向亚波长分辨率

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We present an original method for uncovering phase maps from surface plasmon resonance microscopy images. The phase images obtained from the recording of V(Z) maps with a scanning surface plasmon microscope are affected by zero-mean uncorrelated noise and mechanical drifts. We propose to replace standard phase unwrapping methods by the computation of the local derivative of the phase δφ/δ Z from the V(Z) complex field. Phase unwrapping basically relies on a smoothness constraint of the phase field, which is severely hampered by the noise. Applications of the proposed derivation to interferometric plasmon phase images demonstrate a superior ability of restoring phase maps, preserving their discontinuities, together with an effective noise smoothing performance, irrespective of locally varying coherence characteristics.
机译:我们提出了一种从表面等离振子共振显微镜图像中发现相图的原始方法。通过使用扫描表面等离子体显微镜记录V(Z)图获得的相位图像受零均值不相关噪声和机械漂移的影响。我们建议通过计算V(Z)复数场中δφ/δZ的局部导数来代替标准的相位解缠方法。相位展开基本上依赖于相位场的平滑度约束,该约束严重地受到噪声的阻碍。拟议的推导在干涉等离激元相位图像上的应用表明,无论局部变化的相干特性如何,恢复相位图,保留相位图的不连续性以及有效的噪声平滑性能均具有出色的能力。

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