Zhu X, Cassidy D T
Appl Opt. 1995 Dec 20;34(36):8303-8. doi: 10.1364/AO.34.008303.
An electronic noise-cancellation scheme has been developed and tested for second-harmonic (2f) detection with short-external-cavity and distributed-feedback InGaAsP diode lasers and wavelength modulation. The 2f background signal and noise from, e.g., optical feedback, optical fringes, and power-supply pickup are effectively reduced by subtraction of a measure of the signal-beam photocurrent from a measure of the reference-beam photocurrent. The dynamic range required for the lock-in amplifier is also reduced because the signal owing to modulation of the laser output at the first harmonic is canceled. Reduction of the 2f background and dynamic range are important for atmospheric-pressure detection where a large wavelength modulation is necessary. The detector noise was minimized by the use of zero-biased detectors in the subtraction circuit. A beam-noise level (defined as 2× the rms value) equivalent to a line-center absorption of 1.6 × 10(-6) was achieved with an equivalent-noise bandwidth of 1.25 Hz for 2f detection at 10 kHz. The electronic circuit is easy to construct and low cost.
已开发并测试了一种电子噪声消除方案,用于采用短外腔和分布反馈式 InGaAsP 二极管激光器及波长调制的二次谐波(2f)检测。通过从参考光束光电流测量值中减去信号光束光电流测量值,可有效降低例如光反馈、光学条纹和电源拾取等产生的 2f 背景信号和噪声。由于消除了因激光输出在基波处调制而产生的信号,锁相放大器所需的动态范围也得以减小。降低 2f 背景和动态范围对于需要大波长调制的大气压检测非常重要。通过在减法电路中使用零偏置探测器,探测器噪声降至最低。对于 10 kHz 下的 2f 检测,在等效噪声带宽为 1.25 Hz 时,实现了相当于 1.6×10⁻⁶ 的线中心吸收的光束噪声水平(定义为 2×均方根值)。该电子电路易于构建且成本低廉。