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Optical phase conjugation (OPC)-assisted isotropic focusing

机译:光学相位共轭(OPC)辅助的各向同性聚焦

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摘要

Isotropic optical focusing – the focusing of light with axial confinement that matches its lateral confinement, is important for a broad range of applications. Conventionally, such focusing is achieved by overlapping the focused beams from a pair of opposite-facing microscope objective lenses. However the exacting requirements for the alignment of the objective lenses and the method’s relative intolerance to sample turbidity have significantly limited its utility. In this paper, we present an optical phase conjugation (OPC)-assisted isotropic focusing method that can address both challenges. We exploit the time-reversal nature of OPC playback to naturally guarantee the overlap of the two focused beams even when the objective lenses are significantly misaligned (up to 140 microns transversely and 80 microns axially demonstrated). The scattering correction capability of OPC also enabled us to accomplish isotropic focusing through thick scattering samples (demonstrated with samples of ~7 scattering mean free paths). This method can potentially improve 4Pi microscopy and 3D microstructure patterning.
机译:各向同性光学聚焦–具有与其侧向限制相匹配的轴向限制的光聚焦对于广泛的应用非常重要。通常,通过重叠来自一对相对的显微镜物镜的聚焦光束来实现这种聚焦。但是,对物镜对准的严格要求以及该方法对样品浊度的相对不耐受性极大地限制了其实用性。在本文中,我们提出了一种光学相位共轭(OPC)辅助的各向同性聚焦方法,可以解决这两个难题。我们利用OPC回放的时间反转特性自然地保证了两个聚焦光束的重叠,即使物镜发生严重失准(横向最大140微米,轴向最大80微米)也是如此。 OPC的散射校正功能还使我们能够通过厚散射样本(以约7个散射平均自由程的样本演示)完成各向同性聚焦。该方法可以潜在地改善4Pi显微镜和3D显微结构的图案。

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