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首页> 外文期刊>Journal of innovative optical health sciences >Influence of transverse mode on retinal spot size and retinal injury effect: A theoretical analysis on 532-nm laser
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Influence of transverse mode on retinal spot size and retinal injury effect: A theoretical analysis on 532-nm laser

机译:横模对视网膜光斑大小和视网膜损伤效应的影响:532 nm激光的理论分析

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摘要

The fundamental transverse mode (TEM00) is preferable for experimental and theoretical study on the laser-induced retinal injury effect, for it can produce the minimal retinal image and establish the most strict laser safety standards. But actually lasers with higher order mode were frequently used in both earlier and recent studies. Generally higher order mode leads to larger retinal spot size and so higher damage threshold, but there are few quantitative analyses on this problem. In this paper, a four-surface schematic eye model is established for human and macaque. The propagation of 532-nm laser in schematic eye is analyzed by the ABCD law of Gaussian optics. It is shown that retinal spot size increases with laser transverse mode order. For relative lower mode order, the retinal spot diameter will not exceed the minimum laser-induced retinal lesion (25 ~ 30 μm in diameter), and so has little effect on retinal damage threshold. While for higher order mode, the larger retinal spot requires more energy t...
机译:对于激光诱导的视网膜损伤效应的实验和理论研究,优选基本横模(TEM00),因为它可以产生最小的视网膜图像并建立最严格的激光安全标准。但是实际上,在较早和最近的研究中都经常使用具有高阶模的激光器。通常,高阶模态会导致更大的视网膜光斑尺寸,从而导致更高的损伤阈值,但是对此问题的定量分析很少。在本文中,建立了针对人和猕猴的四表面示意图眼模型。通过高斯光学的ABCD定律分析了532 nm激光在示意眼中的传播。结果表明,视网膜光斑的大小随激光横模序的增加而增大。对于相对较低的模式阶数,视网膜光斑直径不会超过激光诱导的最小视网膜病变(直径为25〜30μm),因此对视网膜损伤阈值的影响很小。对于高阶模式,较大的视网膜光斑需要更多的能量。

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