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Improvement of axial resolution for optical coherence tomography using a synthesized light source

机译:使用合成光源改进光学相干断层扫描的轴向分辨率

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We demonstrated that a synthesized light source (SLS) consisting of two low coherence light sources is capable of enhancing spatial resolution in optical coherence tomography (OCT). The axial resolution of OCT is given by the half of coherence length of the light source. We fabricated an SLS with a coherence length of 2.3 μm and the side lobe intensity of 29% under the intensity ratio of LED 1: LED 2 = 1: 0.4 by combining two light sources, LED 1 with a central wavelength of 700 nm and spectral bandwidth of 100 nm, and LED 2 of 898 nm and 85 nm. The coherence length of 2.3 μm is 56% of the shorter coherence length in two LED's, therefore the axial resolution is 1.2 μm.
机译:我们证明,由两个低相干光源组成的合成光源(SLS)能够提高光学相干断层扫描(OCT)中的空间分辨率。 OCT的轴向分辨率由光源的相干长度的一半给出。我们通过相结合的长度为2.3μm的相干长度和侧叶强度的侧瓣强度通过组合两个光源,LED 1的中心波长为700nm和光谱,侧面凸瓣强度为29%,侧瓣强度为29%,侧瓣强度为29%,侧瓣强度为29%带宽100nm,LED 2为898nm和85nm。两个LED中的相干长度为2.3μm的相干长度为较短的相干长度的56%,因​​此轴向分辨率为1.2μm。

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