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COMPARISON OF BEAM HOMOGENIZERS FOR USE IN A REFRACTIVE LASER SURGICAL SYSTEM

机译:光束均化用于屈光激光手术系统的比较

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Consistent spatial distribution of ultraviolet energy from pulse to pulse is a key element for successful refractive surgical results. Tissue ablation is a nonlinear process; however, a uniform intensity profile is a desirable characteristic in an adjustable imaging-aperture system. At the same time, it is necessary to minimize energy loss as the beam passes though the aperture. Using these parameters, the spatial integration performance of two refractive lenslet arrays - one with square elements and the other with hexagonal elements - was compared. A breadboard optical system was constructed to evaluate each lenslet array, and data were collected with a beam intensity profiler. Transmission of both arrays was measured by collecting through-focus beamlet propagation at various distances. The transmission measurements were scaled to compensate for the difference in beamlet overlap diameter resulting from the unequal size of the lenslet elements. The transmission of the lenslet arrays was nearly equivalent, but the square lenslet array provided a more uniform intensity profile. No benefit was seen in fitting a hexagon instead of a square onto the circular iris.
机译:从脉冲到脉冲的一致空间分布脉冲是成功屈光手术结果的关键元件。组织消融是非线性过程;然而,均匀的强度分布是可调节的成像孔系统中所需的特性。同时,当光束通过孔径时,有必要最小化能量损失。使用这些参数,比较了两个屈光透镜阵列的空间集成性能 - 一个带有方形元素和具有六边形元素的另一个。构造面包板光学系统以评估每个透光阵列,并通过光束强度分布器收集数据。通过在各个距离处收集通过聚焦光束传播来测量两个阵列的传输。缩放透射测量以补偿由透镜元件的不相等大小产生的光束重叠直径的差异。透镜阵列的传输几乎等同,但是方形透镜阵列提供了更均匀的强度分布。在将六边形而不是正方形的圆虹膜上没有看到任何好处。

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