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Method and apparatus for detection of terahertz electric fields using polarization-sensitive excitonic electroabsorption

机译:使用偏振敏感的激子电吸收来检测太赫兹电场的方法和设备

摘要

A terahertz electromagnetic energy detector comprises a (100) oriented multiple quantum well thermally bonded to a first transparent substrate having a direction dependent thermal coefficient of expansion such that this coefficient matches the thermal coefficient of expansion of MQW in one direction but different form the direction-dependent thermal coefficient of expansion of the MQW in a perpendicular direction. The resultant internal thermally induced anisotropic strain leads to a polarization dependence of the optical absorption that is strongest near the lowest heavy-hole and light-hole exciton peaks. A second transparent substrate is placed beneath the first transparent substrate and is oriented so that its thermal coefficients of expansion act in a direction perpendicular to those of the first transparent substrate so that the accumulated phase retardation of the optical wave associated with birefringence of the substrate is effectively cancelled. A transverse electric and electromagnetic field is applied across the plane of the quantum well layers to ionize the excitons, which produces an anisotropic bleaching and concomitant line broadening of the anisotropic excitonic absorption. This phenomenon results in a polarization rotation of the transmitted optical field such that light passing through the device may be detected by a photosensitive polarization detector. The device is capable of effectively measuring the phase and frequency of terahertz energy over a wide bandwidth.
机译:太赫兹电磁能检测器包括(100)取向的多量子阱,其热键合到第一透明基板,该基板具有与方向相关的热膨胀系数,以使该系数与MQW在一个方向上的热膨胀系数匹配,但与以下方向不同: MQW在垂直方向上的热膨胀系数。产生的内部热感应各向异性应变导致光吸收的偏振相关性,在最低的重孔和轻孔激子峰附近,偏振吸收最强。第二透明基板被放置在第一透明基板的下方并且被定向为使得其热膨胀系数在垂直于第一透明基板的热膨胀系数的方向上起作用,使得与基板的双折射相关的光波的累积相位延迟为有效地取消了。在量子阱层的整个平面上施加横向电场和电磁场以使激子电离,这会导致各向异性的漂白和各向异性激子吸收的谱线展宽。该现象导致透射光场的偏振旋转,使得可以通过光敏偏振检测器来检测通过设备的光。该设备能够有效地在宽带宽上测量太赫兹能量的相位和频率。

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