Low noise single frequency linear fibre laser

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Low noise single frequency linear fibre laser

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The low frequency noise characteristics of a single frequency fibre laser with and without noise suppression are presented. With no thermal or mechanical isolation, the peak RMS relaxation oscillation at 182 kHz was 82.1 dB/Hz below the DC laser level without feedback and 112.1 dB/Hz below the DC laser level with feedback.

Inspec keywords: random noise; interference suppression; feedback; fibre lasers; electron device noise

Other keywords: feedback; DC laser level; single frequency; linear fibre laser; peak RMS relaxation oscillation; 182 kHz; noise suppression; low frequency noise characteristics

Subjects: Other fibre optical devices and techniques; Solid lasers; Fibre optics; Fibre lasers and amplifiers

References

    1. 1)
      • G.A. Ball , W.H. Glenn . Design of a single-mode linear-cavity erbium fiber laser utilizing Bragg reflectors. J. Lightwave. Technol. , 1338 - 1343
    2. 2)
      • J.L. Zyskind , V. Mizrahi , D.J. Digiovanni , J.W. Sulhoff . Short single frequency erbium-doped fibre laser. Electron. Lett. , 1385 - 1387
    3. 3)
      • J.L. Zyskind , J.W. Sulhoff , P.D. Magill , K.C. Reichmann , V. Mizrahi , D.J. Digiovanni . Transmission at 2.5 Gbit/s over 654 km using an erbium-doped fibre grating laser source. Electron. Lett. , 1105 - 1106
    4. 4)
      • T.J. Kane . Intensity noise in diode-pumped single-frequency Nd : YAG lasers and its control by electronic feedback. Photonics Technol. Lett. , 244 - 245
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