论文标题
使用方位角极化的光片段的紧密焦点斑点
Tight focal spots using azimuthally polarised light from a Fresnel cone
论文作者
论文摘要
当将光束聚焦在高数值孔径上时,焦平面中产生的电场曲线取决于横向极化曲线,因为需要考虑梁的不同部分之间的干扰。众所周知,径向偏振光会产生纵向极化成分,并且可以集中在均质极化光的常规衍射极限以下,而具有方位的极化光载有一个单位的角动量可以实现更紧密的焦点斑点。例如,这是为了增强扫描显微镜的分辨率而引起的。有很多方法可以产生这种极化结构,但是,设置可能很昂贵,并且通常依赖于双折射组件,因此禁止宽带操作。最近,我们使用简单的玻璃锥(菲涅尔锥)证明了一种被动的低成本技术,以生成具有结构化极化的光束。我们在这里表明,在所有数值孔径上,菲涅耳锥产生的极化结构比径向极化光优于径向极化光。此外,我们详细研究了两光子显微镜的极化光结构的应用。具体而言,我们证明了一种方法,该方法使我们能够通过使用波动板组合来预紧任何有害的相移,从而在显微镜的背面孔的背孔下生成所需的极化结构。
When focusing a light beam at high numerical aperture, the resulting electric field profile in the focal plane depends on the transverse polarisation profile, as interference between different parts of the beam needs to be taken into account. It is well known that radial polarised light produces a longitudinal polarisation component and can be focused below the conventional diffraction limit for homogeneously polarised light, and azimuthally polarised light that carries one unit of angular momentum can achieve even tighter focal spots. This is of interest for example for enhancing resolution in scanning microscopy. There are numerous ways to generate such polarisation structures, however, setups can be expensive and usually rely on birefringent components, hence prohibiting broadband operation. We have recently demonstrated a passive, low-cost technique using a simple glass cone (Fresnel cone) to generate beams with structured polarisation. We show here that the polarisation structure generated by Fresnel cones focuses better than radial polarised light at all numerical apertures. Furthermore, we investigate in detail the application of polarised light structures for two-photon microscopy. Specifically we demonstrate a method that allows us to generate the desired polarisation structure at the back aperture of the microscope by pre-compensating any detrimental phase shifts using a combination of waveplates.