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Laser beam quality and pointing measurement with an optical resonator

机译:激光束质量和使用光学谐振器的指向测量

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摘要

We present a compact diagnostic breadboard that is based on an optical ring resonator for measuring beam quality and pointing of single-frequency continuous wave lasers at a wavelength of 1064 nm. To determine the beam quality of the coherent test beam, this optical resonator is used to perform a mode decomposition into Hermite-Gaussian modes. For our laser system, a power fraction in the fundamental Gaussian mode of 97.2%±0.2% was measured. Residual misalignment and mis-mode-matching to the resonator as well as the astigmatism and/or ellipticity of the test beam have been determined. Numerical simulations showed that measurements of the M2 factor and transversal intensity distribution are not suitable for determining this power fraction. To measure the beam pointing, the fundamental mode of the optical resonator was used as a stable reference. The pointing of the test beam was measured with the differential wave front sensing technique up to Fourier frequencies of 1 kHz with a sensitivity to relative pointing of |epsilon|=1×10−6/sqrt(Hz).
机译:我们提出了一种紧凑的诊断面包板,它基于光学环形谐振器,用于测量光束质量和指向1064 nm波长的单频连续波激光器。为了确定相干测试光束的光束质量,该光学谐振器用于将模式分解为Hermite-Gaussian模式。对于我们的激光系统,在基本高斯模式下测得的功率分数为97.2%±0.2%。已经确定了与谐振器的残余未对准和失配,以及测试光束的像散和/或椭圆率。数值模拟表明,M2因子和横向强度分布的测量不适合确定此功率分数。为了测量光束指向,将光学谐振器的基本模式用作稳定的参考。测试光束的指向是使用差分波前感测技术测量的,直到1 kHz的傅立叶频率,对| epsilon | = 1×10-6 / sqrt(Hz)的相对指向都具有敏感性。

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