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Modulation spectroscopy with a semiconductor diode laser by injection-current modulation

机译:半导体二极管激光器通过注入电流调制的调制光谱

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An analysis of the harmonic content in frequency-modulation and wavelength-modulation spectroscopy with a semiconductor diode laser under injection-current modulation is presented. It is argued that it is the optical power rather than the electric field that is directly modulated by the injection current. A description that is valid for both frequency-modulation and wavelength-modulation spectroscopy based on this concept is developed, and special attention is given to the residual amplitude modulation and second-harmonic (2 f) detection. Data obtained by measuring the magnitudes of the first and second harmonic of the modulation frequency of the output of a 1.31-mu m distributed-feedback diode laser under sinusoidal modulation of the current and the 2 f absorption spectrum of water vapor in wavelength-modulation spectroscopy are presented. These data support the concept that it is the optical power of a diode laser that is directly modulated by modulation of the injection current. (C) 1997 Optical Society of America.
机译:提出了一种在注入电流调制下半导体二极管激光器在频率调制和波长调制光谱中谐波含量的分析方法。有人认为,注入电流直接调制的是光功率而不是电场。基于此概念,提出了一种对频率调制和波长调制光谱均有效的描述,并特别注意了残余振幅调制和二次谐波(2 f)检测。通过在波长正弦调制电流和水蒸气的2 f吸收光谱下测量1.31微米分布反馈二极管激光器的输出的调制频率的一次和二次谐波的幅度获得的数据被提出。这些数据支持这样一个概念,即二极管激光器的光功率直接由注入电流的调制来调制。 (C)1997年美国眼镜学会。

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