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Digital frequency offset-locked He-Ne laser system with high beat frequency stability, narrow optical linewidth and optical fibre output

机译:数字频率偏移锁定的HE-NE激光系统,具有高拍频稳定性,窄光学线宽和光纤输出

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We report on the enhancement of a previously-presented heterodyne laser source on the basis of two phase-locked loop (PLL) frequency coupled internal-mirror He-Ne lasers. Our new system consists of two digitally controlled He-Ne lasers with slightly different wavelengths, and offers high-frequency stability and very narrow optical linewidth. The digitally controlled system has been realized by using a FPGA controller and transconductance amplifiers. The light of both lasers was coupled into separate fibres for heterodyne interferometer applications. To enhance the laser performance we observed the sensitivity of both laser tubes to electromagnetic noise from various laser power supplies and frequency control systems. Furthermore, we describe how the linewidth of a frequency-controlled He-Ne laser can be reduced during precise frequency stabilisation. The digitally controlled laser source reaches a standard beat frequency deviation of less than 20 Hz (with 1 s gate time) and a spectral full width at half maximum (FWHM) of the beat signal less than 3 kHz. The laser source has enough optical output power to serve a fibre-coupled multi axis heterodyne interferometer. The system can be adjusted to output beat frequencies in the range of 0.1 MHz-20 MHz.
机译:我们在两个锁相环(PLL)耦合内镜HE-NE激光器的基础上报告先前呈现的外差激光源的增强。我们的新系统由两个数字控制的HE-NE激光器组成,具有略微不同的波长,并提供高频稳定性和非常窄的光学线宽。通过使用FPGA控制器和跨导放大器实现了数字控制系统。两个激光器的光耦合成用于外差干涉仪应用的单独纤维。为了增强激光性能,我们观察到激光管对来自各种激光电源和频率控制系统的电磁噪声的灵敏度。此外,我们描述了在精确的频率稳定期间可以减少频率控制的HE-NE激光的线宽。数字控制的激光源达到标准拍频偏差小于20Hz(具有1次栅极时间),并且在小于3kHz的节拍信号的半个最大(FWHM)下的光谱全宽度。激光源具有足够的光学输出功率,可用于纤维耦合多轴外差干涉仪。可以调整系统以输出0.1 MHz-20 MHz范围内的拍摄频率。

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