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Colliding pulse mode-locked lasers as light sources for single-shot holography

机译:碰撞脉冲锁模激光器作为单次全息照相的光源

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So far, concepts for three dimensional biomedical imaging rely on scanning in at least one dimension. Single-shot - holography1, in contrast, stores three-dimensional information encoded in an electro-magnetic wave scattered back from a sample in one single hologram. Single-shot holography operates with simultaneous recordings of holograms at different wavelengths. While the lateral sample information is stored in the interference patterns of individual holograms, the depth information is obtained from the spectral distribution at each lateral image point, similar to Fourier-domain optical coherence tomography2. Consequently, the depth resolution of the reconstructed image is determined by the bandwidth of the light source, so that a broadband light source is needed to obtain high depth resolution. Additionally, the holographic material, in which the holograms are stored, restricts the useable bandwidth. A thick photorefractive crystal can store several holograms of different wavelengths at once. As the crystal works best when using a source with a discrete spectrum, a light source is needed that has a spectrum with well distinguishable laser lines. In a proof-of-principle experiment, we use colliding pulse mode-locked (CPM)3 laser diodes as light sources with a comb-like spectrum to demonstrate the concept of single-shot holography by storing multiple holograms at the same time in a photorefractive Rh:BaTiO3 crystal.
机译:到目前为止,三维生物医学成像的概念依赖于至少一维扫描。相反,单次全息图1将以样本中散射回的电磁波编码的三维信息存储在一个全息图中。单发全息术可以同时记录不同波长的全息图。在将横向样本信息存储在各个全息图的干涉图中的同时,深度信息是从每个横向像点处的光谱分布中获得的,类似于傅里叶域光学相干断层扫描2。因此,重建图像的深度分辨率由光源的带宽确定,因此需要宽带光源来获得高深度分辨率。另外,存储全息图的全息材料限制了可用带宽。厚的光折变晶体可以一次存储几个不同波长的全息图。由于在使用具有离散光谱的光源时晶体效果最佳,因此需要具有光谱且可清晰区分激光线的光源。在原理验证实验中,我们使用碰撞脉冲锁模(CPM)3激光二极管作为具有梳状光谱的光源,通过将多个全息图同时存储在一个全息图中来演示单次全息图的概念。光折变Rh:BaTiO3晶体。

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