首页> 外文会议>Conference on High-Power Lasers and Applications II, Oct 15-18, 2002, Shanghai, China >Effect of gas thermal lens in laser resonator upon beam mode of high-power CO2 laser
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Effect of gas thermal lens in laser resonator upon beam mode of high-power CO2 laser

机译:激光谐振腔中的气体热透镜对大功率CO2激光器光束模式的影响

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For gas laser, working gases in resonator have two interaction with laser. One is to generate excited radiation, the other is to affect the propagation of the laser beam. For the latter, gas thermal lens has great effect on laser beam in the resonator for high-power CO2 laser because of long resonator and high laser power in resonator. In this paper, a physical model for gas thermal lens is proposed. As well as the influence of thermal lens upon the propagation of the laser beam in the resonator according to this model is analyzed. It is found that gas thermal lens will transform the laser beam acting as a negative lens which is at the middle of the resonator since the symmetry of the resonator. This negative lens will transform the beam waist position and radius to deviate the idea beam waist position and radius which are determined by the passive resonator. And this deviation causes the mismatch of the transformed laser beam with the resonator. Further more this mismatch results in the energy couple of TEM00 beams to the higher ones to form the mix-mode laser beam and decreasing laser beam quality. In the paper the effects of the laser power, on laser beam modes are analyzed. And as an example, the laser output mode of a high-power CO2 laser with radio-frequency excited and fast-axis-gas-flow is calculated from the above theory. Meanwhile, the output mode of this type of laser is measured by high-power laser beam analyzer - laserscope UFF100. And the calculation is accord with the measurement. So for high-power CO2 laser, the gas thermal lens is an important reason which influence the output mode of the laser beam.
机译:对于气体激光器,谐振器中的工作气体与激光有两种相互作用。一种是产生激发辐射,另一种是影响激光束的传播。对于后者,由于热谐振器较长且谐振器中的激光功率较高,因此气体热透镜对高功率CO2激光器的谐振器中的激光束影响很大。本文提出了一种气体热透镜的物理模型。并分析了热透镜对激光束在谐振器中传播的影响。已经发现,由于谐振器的对称性,气体热透镜将使充当谐振器中间的负透镜的激光束发生转换。该负透镜将变换束腰的位置和半径,以偏离由无源谐振器确定的理想束腰的位置和半径。并且该偏差导致转换后的激光束与谐振器不匹配。此外,这种失配还会导致TEM00光束与较高光束的能量耦合,从而形成混合模式激光束,并降低激光束质量。在本文中,分析了激光功率对激光束模式的影响。并且,例如,根据上述理论计算出具有射频激励和快轴气流的高功率CO 2激光器的激光输出模式。同时,这种类型的激光器的输出模式通过大功率激光束分析仪-laserscope UFF100进行测量。计算与实测吻合。因此,对于大功率的CO2激光器,气体热透镜是影响激光束输出模式的重要原因。

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