• DocumentCode
    68825
  • Title

    Continuous-Wave Sub-THz Photonic Generation With Ultra-Narrow Linewidth, Ultra-High Resolution, Full Frequency Range Coverage and High Long-Term Frequency Stability

  • Author

    Criado, A.R. ; de Dios, C. ; Prior, E. ; Dohler, Gottfried H. ; Preu, S. ; Malzer, Stefan ; Lu, Hai-Han ; Gossard, Arthur C. ; Acedo, Pablo

  • Author_Institution
    Electron. Technol. Dept., Univ. Carlos III de Madrid, Leganes, Spain
  • Volume
    3
  • Issue
    4
  • fYear
    2013
  • fDate
    Jul-13
  • Firstpage
    461
  • Lastpage
    471
  • Abstract
    We report on a photonic system for generation of high quality continuous-wave (CW) sub-THz signals. The system consists on a gain-switching-based optical frequency comb generator (GS-OFCG), a two-optical-modes selection mechanism and a n-i-pn-i-p superlattice photomixer. As mode selection mechanism, both selective tunable optical filtering using Fabry-Pérot tunable filters (FPTFs) and Optical Injection Locking (OIL) are evaluated. The performance of the reported system surpasses in orders of magnitude the performance of any commercially available optical mm-wave and sub-THz generation system in a great number of parameters. It matches and even overcomes those of the best commercially available electronic THz generation systems. The performance parameters featured by our system are: linewidth <;10 Hz at 120 GHz, complete frequency range coverage (60-140 GHz) with a resolution in the order of 0.1 Hz at 120 GHz (10-12 of generated frequency), high long term frequency stability (5 Hz deviation over one hour). Most of these values are limited by the measurement instrumentation accuracy and resolution, thus the actual values of the system could be better than the reported ones. The frequency can be extended straightforwardly up to 1 THz extending the OFCG frequency span. This system is compact, robust, reliable, offers a very high performance, especially suited for sub-THz photonic local oscillators and high resolution spectroscopy.
  • Keywords
    Fabry-Perot resonators; laser cavity resonators; laser frequency stability; optical filters; quantum cascade lasers; submillimetre wave lasers; submillimetre wave mixers; terahertz wave generation; FPTF; Fabry-Perot tunable filters; GS-OFCG; OIL; continuous wave subterahertz photonic generation; frequency 60 GHz to 140 GHz; full frequency range coverage; gain-switching-based optical frequency comb generator; high resolution spectroscopy; long-term frequency stability; measurement instrumentation accuracy; mode selection mechanism; n-i-pn-i-p superlattice photomixer; optical injection locking; quantum cascade lasers; selective tunable optical filtering; subterahertz photonic local oscillators; ultra narrow linewidth terahertz generation; Narrow linewidth THz generation; THz local oscillator; THz photonic generation; optical frequency comb; optical injection locking (OIL);
  • fLanguage
    English
  • Journal_Title
    Terahertz Science and Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    2156-342X
  • Type

    jour

  • DOI
    10.1109/TTHZ.2013.2260374
  • Filename
    6517547