• DocumentCode
    1113812
  • Title

    Compensation of thermally induced modal distortions in Faraday isolators

  • Author

    Khazanov, Efim ; Andreev, Nikolay F. ; Shakov, Anatoly Mal ; Palashov, Oleg ; Poteomkin, Anatoly K. ; Sergeev, Alexander ; Shaykin, Andrey A. ; Zelenogorsky, Victor ; Ivanov, Igor A. ; Amin, Rupal ; Mueller, Guido ; Tanner, David B. ; Reitze, David H.

  • Author_Institution
    Inst. of Appl. Phys., Russian Acad. of Sci., Nizhny Novgorod, Russia
  • Volume
    40
  • Issue
    10
  • fYear
    2004
  • Firstpage
    1500
  • Lastpage
    1510
  • Abstract
    Two methods of compensation of thermal lensing in high-power terbium gallium garnet (TGG) Faraday isolators have been investigated in detail: compensation by means of an ordinary negative lens and compensation using FK51 Schott glass possessing a negative dn/dT. Key thermooptic constants for TGG crystals and FK51 glass were measured. We find that the contribution of the photoelastic effect to the total thermal lens cannot be neglected for either TGG or FK51. We define a figure of merit for compensating glass and show that for FK51, an ordinary negative lens with an optimal focus is more efficient, but requires physical repositioning of the lens for different laser powers. In contrast, the use of FK51 as a compensating element is passive and works at any laser power, but is less effective than simple telescopic compensation. The efficiency of adaptive compensation can be considerably enhanced by using a compensating glass with figure of merit more than 50, a crystal with natural birefringence or gel.
  • Keywords
    Faraday effect; birefringence; compensation; gallium compounds; garnets; lenses; optical distortion; optical focusing; optical glass; optical isolators; photoelasticity; terbium compounds; thermal lensing; FK51 Schott glass; adaptive compensation; birefringence; negative lens; optimal focus; photoelastic effect; terbium gallium garnet Faraday isolators; thermal lensing; thermally induced modal distortions compensation; thermooptic constants; Birefringence; Crystals; Garnets; Glass; Isolators; Laser theory; Lenses; Photoelasticity; Power lasers; Thermal lensing; Faraday effect; laser accessories; laser beam distortion; laser thermal factors; optical isolators; optical polarization; optical propagation in anisotropic media; thermal variables measurements;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.2004.834766
  • Filename
    1337031