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Two-frequency MOPA diode laser system for difference-frequency generation of coherent THz waves

机译:用于相干太赫兹波的差频产生的两频MOPA二极管激光系统

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Abstract: We developed a tunable, cavity-locked diode laser source at 850 nm for difference-frequency generation of coherent THz- waves. The difference frequency is synthesized by three fiber-coupled external-cavity diode lasers, where tow of the lasers are locked to adjacent modes of an ultra-stable Fabry-Perot cavity and the third laser is offset-phase- locked to the second cavity-locked laser using a tunable microwave oscillator. The first cavity-locked laser and the offset-locked laser produces the difference frequency, whose value is precisely determined by sum of integer multiple of free spectral range of the Fabry-Perot cavity and the offset frequency. The difference-frequency signal is amplified to 500 mW by the master oscillator power amplifier technique, simultaneous two-frequency injection-seeding with a single semiconductor optical amplifier. Here we demonstrate the difference-frequency generation of THz waves with the low- temperature-grown GaAs photomixers and its application to high-resolution spectroscopy of simple molecules. An absolute frequency calibration was carried out with an accuracy of approximately 10$+$MIN@7$/ using CO lines in the THz region. !16
机译:摘要:我们开发了一个可调谐,腔锁二极管激光源,波长为850 nm,用于产生相干THz波的不同频率。差分频率由三个光纤耦合的外腔二极管激光器合成,其中两个激光器被锁定到超稳定的Fabry-Perot腔的相邻模式,而第三个激光器被偏置锁相到第二个腔,使用可调微波振荡器锁定激光。第一腔锁定激光器和偏移锁定激光器产生差频,其差值由法布里-珀罗腔的自由光谱范围的整数倍和偏移频率精确确定。通过主振荡器功率放大器技术,将差频信号放大到500 mW,并利用单个半导体光放大器同时进行两频注入。在这里,我们展示了低温生长的GaAs光混合器产生的THz波的差频及其在简单分子的高分辨率光谱学中的应用。使用THz区域中的CO线进行绝对频率校准,精度约为10 $ + MIN @ 7 $ /。 !16

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