High-power laser image transfer space filtering device
A spatial filtering, high-power technology, applied in optics, optical components, instruments, etc., can solve the problems of high device adjustment accuracy, easy to burn filter pinholes, etc., to eliminate the possibility of filter pinholes and simplify the structure. Effect
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Embodiment 1
[0022] figure 1 It is a schematic structural diagram of a high-power laser image transfer low-pass spatial filter device in Embodiment 1 of the present invention, as figure 1 As shown, the high-power laser image transfer low-pass spatial filter device includes: a frequency division lens 11, a restoration lens 12 and a filter pinhole 13, wherein the frequency division lens 11 and the restoration lens 12 form a confocal optical system, and the The frequency division lens 11 and the restoration lens 12 are two convex lenses; the filter aperture 13 is located at the focus of the confocal optical system between the frequency division lens 11 and the restoration lens 12, and the filter aperture 13 The base material is a material with a high-power laser absorption coefficient less than 0.5% / cm, and the base material in this embodiment is a fused silica material that can absorb high-power laser; The front surface is a textured surface; the frequency dividing lens 11, the restoration ...
Embodiment 2
[0025] figure 2 It is a schematic structural diagram of a high-power laser image transfer low-pass spatial filter device in Embodiment 2 of the present invention, as figure 2 As shown, the structure of the high-power laser image transfer low-pass spatial filter device in this embodiment is basically the same as that in Embodiment 1. The difference is that the focal length of the restoration lens 22 is smaller than that of the frequency-division lens 21 to realize the image transfer function of laser beam shrinkage. The base material of the filter aperture 23 is a material with an absorption coefficient of less than 0.5% / cm for high-power laser. The base material in this embodiment is undoped yttrium aluminum garnet, which is located at the focus of the confocal optical system. The rear surface of the incident laser beam perpendicular to the optical axis is a textured surface, and the high-frequency component 25 of the incident laser beam is filtered by the surface to realize...
Embodiment 3
[0027] image 3 It is a schematic structural diagram of a high-power laser image transfer low-pass spatial filter device in Embodiment 3 of the present invention, as image 3 As shown, the structure of the high-power laser image transmission low-pass spatial filter device of this embodiment is basically the same as that of Embodiment 1 and Embodiment 2, the difference is that the focal length of the restoration lens 32 is greater than that of the frequency division lens 31, so as to realize the expansion of the laser beam The image transfer function. The base material of the described filter aperture 33 is a material with an absorption coefficient of high-power laser less than 0.5% / cm. The base material in this embodiment is sapphire, which is located at the focal point of the confocal optical system. The front or rear surface where the laser is incident is a textured surface, and the high-frequency component 35 of the incident laser beam is filtered out by the textured surfa...
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Abstract
Description
Claims
Application Information
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