• DocumentCode
    1383333
  • Title

    Toward a 3:1 frequency divider based on parametric oscillation using AgGaS/sub 2/ and PPLN crystals

  • Author

    Douillet, Albane ; Zondy, Jean-Jacques ; Yelisseyev, Aleksander ; Lobanov, Sergei ; Isaenko, Ludmila

  • Author_Institution
    Lab. Primaire du Temps et des Frequences, Bur. Nat. de Metrol., Paris, France
  • Volume
    47
  • Issue
    5
  • fYear
    2000
  • Firstpage
    1127
  • Lastpage
    1133
  • Abstract
    Frequency divide-by-two (2:1) and divide-by-three (3:1) optical parametric oscillators (OPOs) are basic devices for the implementation of future accurate optical frequency division chains. We report our latest development toward a phase-locked 3:1 frequency division of a radiation at /spl lambda//sub p//spl ap/843 nm (355.9 THz), using doubly resonant oscillators (DROs) based on silver gallium sulfide (AgGaS/sub 2/ or AGS) and multigrating periodically poled lithium niobate (PPLN). Although stable single-mode pair operation is achievable without any active cavity length servo with the AGS-DRO, because of a strong passive thermal feedback servo, the PPLN-DRO requires an active intensity side-of-fringe locking servo to maintain long-term, single-mode pair operation. To overcome the limited idler output power (<1 mW) due to the weak mirror transmissivity at 2.53 /spl mu/m, a CaF/sub 2/ Brewster-oriented plate was inserted in a longer-cavity PPLN-DRO as a variable output coupler. About 3 mW of idler wave is thus coupled outside the cavity, yielding 15 nW of doubled-idler. We obtained a 30 dB signal-to-noise ratio beatnote in a 100 kHz resolution bandwidth of a spectrum analyser. This beat signal will be used to phase-lock the divider.
  • Keywords
    Frequency dividers; Gallium compounds; Lithium compounds; Optical frequency conversion; Optical parametric oscillators; Phase locked oscillators; Silver compounds; 355.9 THz; 843 nm; AGS crystal; AgGaS/sub 2/; LiNbO/sub 3/; PPLN crystal; doubly resonant oscillator; frequency divider; optical parametric oscillator; periodically poled lithium niobate; phase locking; silver gallium sulfide; Frequency conversion; Gallium compounds; Nonlinear optics; Optical devices; Optical feedback; Optical frequency conversion; Oscillators; Resonance; Servomechanisms; Silver;
  • fLanguage
    English
  • Journal_Title
    Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-3010
  • Type

    jour

  • DOI
    10.1109/58.869049
  • Filename
    869049