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Beam Shaping in Flow Cytometry with Diffractive Optical Elements

机译:流式细胞术中的光束成形,具有衍射光学元件

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Focusing elements are usually employed in the flow cytometry to focus the input laser beam into elliptically shaped Gaussian beam in order to increase power for excitation of fluorescence for high signal-to-noise ratio (SNR). While in order to ensure repeatable and reliable signal generation for accurate population discrimination - despite slight deviations of the cell from the flow centre, the shaped beam should be a cubic diffraction region with uniform power intensity across the cell flow stream. However, it is hard for beam shaping with refractive optical elements. In this paper, we present a beam shaping system in flow cytometry with diffractive optical elements (DOEs) to shape the input laser beam to a cubic diffraction region with uniform power intensity. The phase distribution of the DOE is obtained by using the inverse Fresnel diffraction based layered holographic stereogram, and the cubic diffraction region with uniform power intensity within the cell flow channel is well reconstructed. Simulation results demonstrate the good performance of the new beam shaping system.
机译:聚焦元素通常用于流式细胞术中以将输入激光束聚焦到椭圆形高斯光束中,以便增加用于高信噪比(SNR)的荧光激发的功率。虽然为了确保可重复且可靠的信号产生用于精确的群体辨别 - 尽管电池与流量的偏差略微偏差,但是形状的光束应该是小区流动流的立方衍射区域,其功率强度均匀。然而,用折射光学元件结合光束。在本文中,我们在流式细胞术中提出了一种衍射光学元件(确实)以将输入激光束形式成均匀的功率强度的立方衍射区域。通过使用基于逆叶釜衍射的层状全息立体图获得DOE的相分布,并且在细胞流通道内具有均匀的功率强度的立方衍射区域很好地重建。仿真结果表明了新的光束整形系统的良好性能。

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