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Modeling of energy transfer from the photon beam at an optical media

机译:光子梁在光学介质中的能量转移建模

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Laser beam could be applied to act in optical media, to build different spatial images. The operation could be made direct by copying an image or through a C.D. The successive points could be realized with relatively high speed, like 10~3-10~5 points per second. Each point represents practically a machining operation done by the laser beam. In most cases, energy transfer is made not in a plane, but in a volume, and this requires moving the focal point in positions required by the image we want to create. This is a sequentially operation, made point by point following a definite order, but in the same time, because the image is spatially, we have to adapt also other parameters of the optical system, for each considered point. The energy required for each point of the image must be the same, because all the micro spheres representing a "point" of the image must have the same volume. In this way we could realize a coherent spatial image. From the experimental research we made, we have learnt that is important to build a model for the energy transfer to optical media, in order to have a good quality for the work we have to do.
机译:激光束可以应用于在光学介质中采用,以构建不同的空间图像。可以通过复制图像或通过C.D来直接进行操作。连续点可以以相对高的速度实现,如每秒10〜3-10〜5点。每个点几乎表示由激光束完成的加工操作。在大多数情况下,能量转移不在平面中,但在卷中,这需要将焦点移动到我们想要创建的图像所需的位置。这是一个顺序操作,由一定的顺序发出点,但同时,因为图像在空间上,我们必须为每个考虑的光学系统调整光学系统的其他参数。图像的每个点所需的能量必须是相同的,因为表示图像的“点”的所有微型球体必须具有相同的体积。以这种方式,我们可以实现相干的空间图像。从我们所做的实验研究来看,我们已经了解到,为建立能源转移到光学媒体的模型是很重要的,以便为我们要做的工作具有良好的品质。

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