主要特点
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将高斯光束转换为平顶光束
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高损伤阈值:63.4 J/cm2
@1064 nm,10ns 和 2.2 J/cm2
@1030 nm,212 fs
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波长范围从 300 nm 到 2 μm
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转换效率可达 70 %(取决于波长)
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大光圈(≤ 15 毫米;标准为 6 毫米)
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根据您的激光束规格设计
详细说明
用于平顶转换的空间变体波片是一种空间变体相位延迟板,通过飞秒激光脉冲刻在一块熔融石英玻璃内。众所周知,与高斯光束轮廓相比,在效率和质量方面,平顶强度分布对于微加工具有明显的优势。
空间变化波片和偏振器的组合充当空间变化传输滤波器,可用于将初始高斯光束转换为平顶光束,效率超过初始激光功率的 50% 。
转换器允许即时调整光束形状,从平顶到中间倾斜的形状。该转换器兼容高功率短脉冲激光器。

References
- Gertus, A. Michailovas, K. Michailovas, V. Petrauskienė, “Laser beam shape converter using spatially variable waveplate made by nanogratings inscription in fused silica”, SPIE 9343, Laser Resonators, Microresonators, and Beam Control XVII, 93431S (March 3, 2015). doi:10.1117/12.2075869
- Michailovas, J. Adamonis, A. Aleknavicius, S. Balickas, T. Gertus, A. Zaukevičius, K. Michailovas, and V. Petrauskiene, “A New Beam Shaping Technique Implemented In 150 W 1kHz Repetition Rate Picosecond Pulse Amplifier”, OSA Technical Digest (online) (Optical Society of America), paper JTu5A.40A, (2016). doi:10.1364/CLEO_AT.2016.JTu5A.40
- Adamonis, A. Aleknavičius, K. Michailovas, S. Balickas, V. Petrauskienė, T. Gertus, and A. Michailovas, “Implementation of a SVWP-based laser beam shaping technique for generation of 100-mJ-level picosecond pulses”, Applied Optics, Vol. 55, Issue 28, pp. 8007-8015, (2016). doi:10.1364/AO.55.008007
- Homburg, O., & Mitra, T. (2012). Gaussian-to-top-hat beam shaping: an overview of parameters, methods, and applications. Laser Resonators, Microresonators, and Beam Control XIV. doi:10.1117/12.907914