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Development of a low cost laser diode modulation circuit for direct and 2f spectroscopic measurements of water.

机译:开发用于直接和2f光谱测量水的低成本激光二极管调制电路。

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This thesis documents the development of a modulation circuit to detect Near-IR water absorption lines using two different wavelength modulation spectroscopy techniques. The modulation circuit was designed using operational amplifiers and zero crossover function generators to operate at different voltages and frequencies. This low cost circuit overcame the limitations of modulation circuits used by others and was very versatile when measuring water absorption using both direct and indirect spectroscopic techniques. This research systematically determined the circuit performance during the detection of two water transition lines at 1.3987 mum and 1.3997 microm using wavelength modulation spectroscopy. Indirect spectroscopy using the 2f Voigt line shape of water, a high speed lock-in amplifier with a single InGaAs photodetector was demonstrated with this circuit. This ultra-fast spectroscopic technique collected 1 million data points capturing the complete water transition spectrum in 1/2000 of a second.
机译:本文研究了使用两种不同波长调制光谱技术检测近红外水吸收线的调制电路的发展。调制电路是使用运算放大器和零交叉函数发生器设计的,以在不同的电压和频率下工作。这种低成本电路克服了其他人使用的调制电路的局限性,并且在使用直接和间接光谱技术测量吸水率时非常通用。这项研究系统地使用波长调制光谱法确定了在检测到两条水过渡线时的电路性能(1.3987微米和1.3997微米)。使用该电路演示了使用2f Voigt线形水的间接光谱学,以及具有单个InGaAs光电探测器的高速锁定放大器。这种超快速光谱技术收集了100万个数据点,可在1/2000秒内捕获完整的水跃迁光谱。

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