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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Scattering of a non-paraxial Bessel light-sheet by a sphere of arbitrary size
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Scattering of a non-paraxial Bessel light-sheet by a sphere of arbitrary size

机译:通过任意尺寸的球体散射非剖腹位贝塞尔光片

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The scattering of a non-paraxial Bessel light-sheet by a sphere of arbitrary size is studied in framework of generalized Lorenz--Mie theory (GLMT). The electrical fields of the Bessel light-sheet are expanded using the vector angular spectrum decomposition method (VASDM), and the beam shape coefficients (BSCs) of the Bessel light-sheet are derived using the method of multipole expansion and vector spherical wave functions (VSWF). The internal and near-surface fields, and absorption and extinction efficiency factors are numerically calculated when a Bessel light-sheet is incident, and the effects of beam's order, and half-cone angle are mainly discussed. Numerical results show that there is strong point convergence in the forward scattering region under the incident of a Bessel light-sheet, and the internal and near-surface fields of Bessel light-sheet are very sensitive to the beam's order, half-cone angle, etc. Such results have potential applications in the super-resolution imaging using a light-sheet microscopy. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在广义Lorenz - Mie理论(GLMT)的框架中,研究了任意尺寸球体的非瘫痪贝塞尔光片的散射。使用载体角谱分解方法(VASDM)扩展贝塞尔光片的电场,并且使用多极膨胀和向量球形波函数的方法导出贝塞尔光片的光束形状系数(BSC)( vswf)。当贝塞尔光片入射时,数值计算内部和近表面场,以及吸收和消光效率因子,以及主要讨论光束顺序的效果和半锥角。数值结果表明,在贝塞尔光片入射下的前向散射区域中存在强点会聚,贝塞尔灯纸的内部和近表面场对光束的顺序非常敏感,半锥角度,这种结果在使用光纸显微镜的超分辨率成像中具有潜在的应用。 (c)2020 elestvier有限公司保留所有权利。

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