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Investigation and Improvement of Thermal Stability of a Chromatic Confocal Probe with a Mode-Locked Femtosecond Laser Source

机译:锁定飞秒激光源的色彩共焦探针热稳定性的研究和改进

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摘要

An intentional investigation on the thermal stability of a mode-locked femtosecond laser chromatic confocal probe, which is a critical issue for the probe to be applied for long-term displacement measurement or surface profile measurement requiring long-time scanning, is carried out. At first, the thermal instability of the first prototype measurement setup is evaluated in experiments where the existence of a considerably large thermal instability is confirmed. Then the possible reasons for the thermal instability of the measurement setup are analyzed quantitatively, such as the thermal instability of the refractive index of the confocal lens and the thermal expansion of mechanical jigs employed in the probe. It is verified that most of the thermal instability of the measurement setup is caused by the thermal expansion of mechanical jigs in the probe. For the improvement of the thermal stability of the probe, it is necessary to employ a low thermal expansion material for the mechanical jigs in the measurement setup and to shorten the optical path length of the laser beam. Based on the analysis result, a second prototype probe is newly designed and constructed. The improved thermal stability of the second prototype probe is verified through theoretical calculations and experiments.
机译:上的锁模飞秒激光彩色共焦探针,其是要应用于长期位移测量或表面轮廓的测量为探头的一个关键问题,需要长时间扫描的热稳定性的有意调查,被执行。首先,第一个原型测量设置的热不稳定性在实验中相当大的热不稳定性的确认存在进行评估。然后,对于测量设置的热不稳定性的可能原因进行定量分析,如共焦透镜的折射率和在探头中使用机械夹具的热膨胀的热不稳定性。验证了大部分的测量设置的热不稳定性是由机械夹具的探针中的热膨胀引起的。为探针的热稳定性的提高,有必要采用一种低热膨胀材料在测量设置的机械夹具和缩短激光束的光路长度。基于该分析结果,第二原型探针被重新设计和构造。第二原型探针的改进的热稳定性是通过理论计算和实验验证。

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