首页> 外文会议>22nd International Symposium on Space Terahertz Technology 2011. >Frequency locking of a 3.5 THz quantum cascade laser using a gas cell
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Frequency locking of a 3.5 THz quantum cascade laser using a gas cell

机译:使用气室的3.5 THz量子级联激光器的频率锁定

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摘要

We report a frequency locking experiment of a 3.5 THz third-order distributed feedback quantum cascade laser (QCL) by using a molecular absorption line of methanol (CH_3OH) gas. With the help of the absorption line, the frequency noise of the QCL is transformed into measurable amplitude fluctuation. We first present the study of the noise of the THz QCL with the contribution from both the frequency and amplitude domain, by using a NbN superconducting hot-electron bolometer as a power detector. We then present the frequency locking measurement with a lock-in amplifier registering the derivate curve of the absorption line and a proportional-integral-derivative (PID) controller generating the feedback signal. The linewidth of the QCL in the free-running mode was found to be around 900 KHz. This linewidth is reduced to below 17 KHz (full width at half maximum) with a Gaussian-like shape when the control loop is active. Because of the frequency stabilization the noise power spectral density of the QCL shows a reduction of more than 20 dB at frequencies below 30 Hz.
机译:我们报告了使用甲醇(CH_3OH)气体的分子吸收线对3.5 THz三阶分布式反馈量子级联激光器(QCL)进行的频率锁定实验。在吸收线的帮助下,QCL的频率噪声被转换为可测量的幅度波动。我们首先通过使用NbN超导热电子辐射热计作为功率检测器,来研究THz QCL噪声在频率和幅度域的贡献。然后,我们通过锁定放大器(记录吸收线的导数曲线)和生成反馈信号的比例积分微分(PID)控制器来介绍锁频测量。在自由运行模式下,QCL的线宽约为900 KHz。当控制回路处于活动状态时,该线宽以高斯型形状减小到17 KHz以下(半高全宽)。由于频率稳定,在低于30 Hz的频率下,QCL的噪声功率频谱密度显示降低超过20 dB。

著录项

  • 来源
  • 会议地点 Tucson AZ(US);Tucson AZ(US)
  • 作者单位

    Kavli Institute of NanoScience, Delft University of Technology, Lorcntzweg 1, 2628 CJ Delft, The Netherlands, with the Purple Mountain Observatory, Chinese Academy of Sciences, Nanjing, China, and with the graduate school, Chinese Academy of Science, Beijing, China;

    Kavli Institute of NanoScience, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft,The Netherlands;

    SRON Netherlands Institute for Space Research, Sorbonnelaan 2, 3584 CA Utrecht, The Netherlands;

    SRON Netherlands Institute for Space Research, Sorbonnelaan 2, 3584 CA Utrecht, The Netherlands;

    Kavli Institute of NanoScience, Delft University of Technology, Lorcntzweg 1, 2628 CJ Delft, The Netherlands, and with the SRON Netherlands Institute for Space Research, Sorbonnelaan 2, 3584 CA Utrecht, The Netherlands;

    Kavli Institute of NanoScience, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft,The Netherlands;

    Purple Mountain Observatory, Chinese Academy of Sciences, Nanjing, China;

    Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge,Massachusetts 02139, USA;

    Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge,Massachusetts 02139, USA;

    Center for Integrated Nanotechnologies, Sandia National Laboratories, Albuquerque, NM 87185-0601, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微波与超高频技术;微波与超高频技术;
  • 关键词

    terahertz; quantum cascade laser; frequency stabilization; heterodyne; and local oscillator;

    机译:太赫兹量子级联激光器频率稳定外差和本地振荡器;

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