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Note: Development of a high resolution and wide band terahertz spectrometer based on a 1 μm-band external cavity diode laser

机译:注意:基于1μm波段外腔二极管激光器的高分辨率宽频带太赫兹光谱仪的开发

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We have developed a frequency-domain terahertz spectrometer based on homebuilt 1 μm band external cavity diode lasers, for high resolution spectroscopy. Our spectrometer is digitally controlled to a resolution of 10 MHz, and uses InGaAs/GaAs photoconductive antennas. We have obtained a spectrum in the range 0.02 THz to 2.5 THz, which exceeds the conventional temperature tuning range of a distributed feedback diode laser. We achieved a signal-to-noise ratio of up to 80 dB at around 0.05 THz, and 20 dB at around 2.0 THz. We observed water vapor spectra in the atmosphere with a frequency step of 0.6 GHz in the region between 1.0 THz and 2.0 THz. We have demonstrated that our 1 μm-band frequency-domain terahertz spectrometer is competitive when compared with existing 800 nm- and 1.5 μm-band systems.
机译:我们开发了基于自制1μm波段外腔二极管激光器的频域太赫兹光谱仪,用于高分辨率光谱。我们的光谱仪被数字控制到10 MHz的分辨率,并使用InGaAs / GaAs光电导天线。我们已经获得了0.02 THz至2.5 THz范围内的光谱,该光谱超出了分布式反馈二极管激光器的常规温度调节范围。在大约0.05 THz时,信噪比高达80 dB,而在大约2.0 THz时,信噪比高达20 dB。我们在1.0 THz和2.0 THz之间的区域中观察到了以0.6 GHz频率步进的大气中的水蒸气光谱。我们已经证明,与现有的800 nm和1.5μm波段系统相比,我们的1μm波段频域太赫兹光谱仪具有竞争力。

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