A Directly Liquid-Cooled Distributed Gain Laser Based on Polarized Dual-Pass Side Pumps
A polarizing beamsplitter and laser technology, applied in lasers, laser parts, laser parts and other directions, can solve the problems of low laser output efficiency, low heat distribution of laser crystals, affecting the quality of laser beams, etc., to reduce defocusing, Effective effect of thermal tilt aberration
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Embodiment 1
[0027] like figure 1 As shown, it is a gain unit for a direct liquid-cooled array distributed gain laser based on multi-pass side pumping, the gain unit includes the first direct liquid-cooled array distributed gain module (7), gain module one A first pumping module and a 1 / 2 wave plate (6) are arranged on one side, and a second pumping module is arranged on the other side.
[0028]In the direction of the optical path, the first pumping module sequentially includes a first laser diode array pumping source (11), a first fast-axis shaping mirror (21), a first slow-axis shaping mirror (31), and a first reflector ( 41), the first polarization beam splitter (51); the second pumping module includes the second laser diode array pumping source (12), the second fast axis shaping mirror (22), the second slow axis shaping mirror ( 32), the second reflecting mirror (42), the second polarizing beam splitter (52); the array type distribution gain module (7) of the first direct liquid cooli...
Embodiment 2
[0035] like figure 2 Shown is a direct liquid-cooled array distributed gain laser based on multi-pass side pumping. The laser system is sequentially composed of a concave reflector L1, two gain units (I1 and I2) and a laser output coupling mirror L2, and the gain units (I1 and I2) are the gain units described in any of the foregoing embodiments.
[0036] In this laser system, the pump coupling system, gain module structure and pump optical path system of the two gain units are exactly the same, the difference is that the cooling fluid flow directions of the direct liquid-cooled gain modules in the two gain units are opposite . like figure 2 As shown, if two gain units I1 and I2 with the same structure are symmetrically arranged, the liquid flow direction of the second direct liquid-cooled array distributed gain module 17 is the same as the liquid flow direction of the first directly liquid-cooled array distributed gain module 7. The direction is opposite, and the two ends...
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