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首页> 外文期刊>International Journal of Optics >Research on Spectroscopy Modulation of a Distributed Feedback Laser Diode Based on the TDLAS Technique
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Research on Spectroscopy Modulation of a Distributed Feedback Laser Diode Based on the TDLAS Technique

机译:基于TDLA技术的分布式反馈激光二极管光谱调制研究

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摘要

Laser current and temperature control circuits have been developed for a distributed feedback laser diode, which is applied as the light source of a tuneable diode laser absorption spectroscopy system. The laser’s temperature fluctuation can be limited within the range of ?0.02 to 0.02°C, and good operation stability was observed through 15 hours of monitoring on the emitting wavelength of the laser. Response time of temperature modulation was tested which is suitable for the tuning requirements of gas detection systems. Laser current can be injected within the range from 40 to 80?mA. In addition, a linear power supply circuit has been developed to provide stable and low-noise power supply for the system. The physical principles of laser modulation theory are discussed before experiments. Experiments show that the output wavelength of the laser can be tuned accurately through changing the working current and temperature. The wavelength can be linearly controlled by temperature at 0.115?nm/°C ( I ?=?70?mA) and be controlled by current at 0.0140?nm/mA ( T ?=?25°C). This is essential for the tuneable diode laser absorption spectroscopy systems. The proposed cost-effective circuits can replace commercial instruments to drive the laser to meet the requirements of methane detection experiments. It can also be applied to detect other gases by changing the light source lasers and parameters of the circuits.
机译:已经为分布式反馈激光二极管开发了激光电流和温度控制电路,其作为可调二极管激光吸收光谱系统的光源施加。激光的温度波动可以限制在0.02至0.02℃的范围内,并且通过在激光的发射波长的监测中观察到良好的操作稳定性。测试了温度调制的响应时间,适用于调谐对气体检测系统的调整要求。激光电流可在40至80Ω的范围内注射。此外,已经开发了线性电源电路来为系统提供稳定和低噪声电源。激光调制理论的物理原理在实验之前讨论。实验表明,通过改变工作电流和温度,可以精确地调谐激光器的输出波长。波长可以通过0.115Ω/℃(Iα= 70℃)的温度线性控制,并通过0.0140Ω·nm / ma(t≤25°C)的电流控制。这对于可调的二极管激光吸收光谱系统至关重要。所提出的经济高效电路可以取代商业仪器来驱动激光以满足甲烷检测实验的要求。也可以通过改变光源激光器和电路的参数来应用于检测其他气体。

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