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      A Lorentzian narrow-linewidth demodulation scheme based on a short fiber delayed self-heterodyne technique

      , , , , , , , ,
      Applied Physics Express
      IOP Publishing

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          Abstract

          We propose a narrow-linewidth demodulation method which utilizes a short-fiber-delayed self-heterodyne structure and coherent envelope spectral properties to restore the Lorentzian line shape of the laser output. The Lorentzian spectrum obtained using our scheme is consistent with that obtained using a traditional long-delay method, and here, the utilization of a short fiber avoids the broadening caused by 1/f noise. Both simulated and experimental results demonstrate that our scheme is effective and accurate. We demonstrate the recovery of a Lorentzian linewidth of 6.0 kHz, while maintaining higher accuracy than that achieved using traditional schemes (31.7 kHz). Our approach provides a feasible means of improving the accuracy and computational efficiency of narrow linewidth measurements.

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          Most cited references34

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            Quantum Theory of an Optical Maser. I. General Theory

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              Novel method for high resolution measurement of laser output spectrum

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                Author and article information

                Contributors
                Journal
                Applied Physics Express
                Appl. Phys. Express
                IOP Publishing
                1882-0778
                1882-0786
                September 23 2022
                October 01 2022
                September 23 2022
                October 01 2022
                : 15
                : 10
                : 106502
                Article
                10.35848/1882-0786/ac9177
                8f60eea8-2175-4c75-8383-e9e2b1acf663
                © 2022

                https://iopscience.iop.org/page/copyright

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