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Ultra-fast and calibration-free temperature sensing in the intrapulse mode

机译:脉冲内模式下超快速且无需校准的温度感应

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摘要

A simultaneously time-resolved and calibration-free sensor has been demonstrated to measure temperature at the nanosecond timescale at repetition rates of 1.0 MHz. The sensor benefits from relying on a single laser, is intuitive and straightforward to implement, and can sweep across spectral ranges in excess of 1 cm(-1). The sensor can fully resolve rovibrational features of the CO molecule, native to combustion environments, in the mid-infrared range near lambda = 4.85 mu m at typical combustion temperatures (800-2500 K) and pressures (1-3 atm). All of this is possible through the exploitation of chirp in a quantum cascade laser, operating at a duty cycle of 50%, and by using high bandwidth (500 MHz) photodetection. Here, we showcase uncluttered, spectrally-pure Voigt profile fitting with accompanying peak SNRs of 150, resulting in a typical temperature precision of 0.9% (1 sigma) at an effective time-resolution of 1.0 MHz. Our sensor is applicable to other species, and can be integrated into commercial technologies. (C) 2014 Optical Society of America
机译:事实证明,一个同时解析时间且无需校准的传感器可以以1.0 MHz的重复速率在纳秒级的时间范围内测量温度。该传感器得益于依靠单个激光器的优势,实现起来直观而直接,并且可以扫描超过1 cm(-1)的光谱范围。该传感器可以在典型的燃烧温度(800-2500 K)和压力(1-3 atm)下,在λ= 4.85μm的中红外范围内,完全解决燃烧环境固有的CO分子的振动特性。所有这些都可以通过在工作于50%的占空比的量子级联激光器中利用of来实现,以及通过使用高带宽(500 MHz)光检测来实现。在这里,我们展示了整洁,频谱纯净的Voigt轮廓拟合,伴随的峰值SNR为150,在1.0 MHz的有效时间分辨率下,典型的温度精度为0.9%(1 sigma)。我们的传感器适用于其他物种,并且可以集成到商业技术中。 (C)2014年美国眼镜学会

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