太赫兹辐射
材料科学
光电子学
光学
照相混合
扫频响应分析
激光器
分光计
吸收(声学)
探测器
远红外激光器
物理
量子力学
太赫兹超材料
复合材料
作者
E. R. Brown,J. E. Bjarnason,T. L. J. Chan,D. C. Driscoll,M. Hanson,A. C. Gossard
摘要
An all-solid-state continuous-wave sweep oscillator has been developed that provides high-resolution, transmission measurements between ∼30 GHz and 3 THz. It is based on difference-frequency generation between two cw frequency-offset lasers driving an ultrafast photoconductive mixer (photomixer). The output power around 100 GHz is approximately 10 μW, falling to about 1 μW around 1 THz and 0.1 μW around 3 THz. The sweep oscillator is used with two types of detectors: a hot electron bolometer for high-sensitivity measurements of weak absorption features below 1 THz, and a room temperature Golay cell for coarse measurements anywhere between 30 GHz and 3 THz. The sweep oscillator facilitates the rapid characterization of a broad variety of materials including inorganic solids, biological materials, liquids, and gases with far greater resolution (∼10 MHz), frequency accuracy (∼0.1 GHz), and spectral density (∼1 μW/MHz) than competitive wideband instruments such as Fourier-transform or time-domain spectrometers. To demonstrate the versatility of the sweep oscillator, results are presented for two diverse cases of interest: (1) fast scan, broadband (>1 THz) absorption profiles from biomaterials such as polysaccharides, and (2) slow scan, narrow-band (∼1 GHz) atmospheric lines from water vapor.
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