首页> 外文会议>Tenth International Symposium on Space Terahertz Technology Mar 16-18, 1999 Charlottesville, Virginia >A HIGH RESOLUTION SPECTROMETER FOR THE INVESTIGATION OF MOLECULAR STRUCTURES IN THE THZ RANGE
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A HIGH RESOLUTION SPECTROMETER FOR THE INVESTIGATION OF MOLECULAR STRUCTURES IN THE THZ RANGE

机译:用于THZ范围内分子结构研究的高分辨率光谱仪

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A status report on the design study of a novel tunable far-infrared (TuFIR) spectrometer for the investigation of the structure of weakly bound molecular complexes is given. The goal is a sensitive TuFIR spectrometer with full frequency coverage from 1-6 THz. To hit the goal, advanced sources (e.g. p-Ge lasers) and detectors (e.g. superconducting hot electron bolometric (HEB) mixers) shall be employed to extend the technique of cavity ringdown spectroscopy, that is currently used at optical and infrared frequencies to the FIR spectral range. Critical for such a system are high-Q resonators that still allow good optical coupling, and wideband antireflection coatings to increase detector sensitivity and decrease optical path losses. 2nd order effective media theory and an iterative multilayer algorithm have been employed to design wideband antireflection coatings for dielectrics with large dielectric constants like Ge or Si. Taking into account 6 layers, for Si bandwidths of 100% of the center frequency could be obtained with power reflectivities below 1% for both polarizations simultaneously. Wideband dielectric mirrors including absorption losses were also studied yielding a bandwidth of about 50% with reflectivities larger than 99.5 %.
机译:给出了关于新型可调谐远红外光谱仪(TuFIR)的设计研究的现状报告,该光谱仪用于研究弱结合分子复合物的结构。目标是灵敏的TuFIR光谱仪,其全频率覆盖范围为1-6 THz。为了达到这个目标,必须采用先进的光源(例如p-Ge激光器)和检测器(例如超导热电子测辐射仪(HEB)混合器)来扩展腔振铃光谱技术,该技术目前在光学和红外频率下使用到FIR光谱范围。对于这种系统而言,至关重要的是仍然可以实现良好光耦合的高Q谐振器,以及宽带增透膜,以提高检测器的灵敏度并减少光路损耗。已采用二阶有效介质理论和多层迭代算法来设计用于具有大介电常数(如Ge或Si)的电介质的宽带减反射涂层。考虑到6层,对于两个极化,对于Si带宽为中心频率的100%,可以获得功率反射率低于1%的Si带宽。还研究了包括吸收损耗在内的宽带介电镜,其产生的带宽约为50%,反射率大于99.5%。

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