首页> 外文会议>Quantum sensing and nanophotonic devices XII >Optically-pumped continuous-wave terahertz sources
【24h】

Optically-pumped continuous-wave terahertz sources

机译:光泵浦连续波太赫兹源

获取原文
获取原文并翻译 | 示例

摘要

Recently we have improved the efficiency and the output power of our optically pumped continuous-wave THz sources. These sources are based on the beating of two laser lines in a wide bandwidth photodetector. Its intrinsic nonlinear behaviour is used to produce a beatnote at the frequency difference between the two laser lines (photomixing). These photomixers are continuously tunable THz sources working at room temperature. We have developed two kinds of photomixers: GaAs-based for 0.8 μm pumping and InP-based for 1.5 μm pumping. On GaAs the best results has been obtained thanks to low-temperature-grown GaAs (LTG-GaAs) photoconductors (PC). Efficiency and power were optimized by designing a new type of thin PC placed in a Fabry-Perot resonator. The high impedance of the PC is a well-known limitation of this device but with our approach it was possible to reduce its impedance by a factor 100. Moreover by designing an impedance matching network it was possible to obtain 1.8 mW at 252 GHz with a total efficiency of 0.5 %. On InP the best results are obtained with uni-travelling-carrier photodiodes (UTC-PD). The device was improved by designing a new heterostructure and new semi-transparent contacts with sub-wavelength apertures. The active layer was also bonded to a silicon substrate thanks to metal thermocompression. It is demonstrated that with this approach it is possible to obtain a power of 0.7 mW at 300 GHz with a total efficiency of 0.7 %. More generally the efficiency of optically pumped terahertz sources will be discussed.
机译:最近,我们提高了光泵浦连续波THz光源的效率和输出功率。这些光源基于宽带光电探测器中两条激光线的跳动。它固有的非线性行为被用来在两条激光线之间的频率差处产生一个节拍音(光混合)。这些光混合器是在室温下连续可调的太赫兹源。我们已经开发了两种类型的光混合器:基于GaAs的0.8μm泵浦和基于InP的1.5μm泵浦。在GaAs上,得益于低温生长的GaAs(LTG-GaAs)光电导体(PC),可获得最佳结果。通过设计一种放置在Fabry-Perot谐振器中的新型薄型PC,可以优化效率和功耗。 PC的高阻抗是该设备的众所周知的局限性,但是通过我们的方法,可以将其阻抗降低100倍。此外,通过设计阻抗匹配网络,可以在252 GHz的频率下获得1.8 mW的功率。总效率为0.5%。在InP上,单行进载流光电二极管(UTC-PD)可获得最佳结果。通过设计具有亚波长孔的新型异质结构和新型半透明触点,对该器件进行了改进。由于金属的热压作用,活性层也结合到硅衬底上。事实证明,采用这种方法可以在300 GHz时获得0.7 mW的功率,总效率为0.7%。更一般地,将讨论光泵浦太赫兹源的效率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号