In-Fiber All-Optical Fractional Differentiator Using an Asymmetrical Moiré Fiber Grating

Author:

Tendela Lucas P.12,Cuadrado-Laborde Christian A.13,Andrés Miguel V.4

Affiliation:

1. Instituto de Física Rosario (CONICET-UNR), Rosario S2000EZP, Argentina

2. Facultad de Ciencias, Exactas, Ingeniería y Agrimensura, UNR, Rosario S2000BTP, Argentina

3. Facultad de Química e Ingeniería, Pontificia Universidad Católica Argentina, Av. Pellegrini 3314, Rosario S2002QEO, Argentina

4. Departamento de Física Aplicada y Electromagnetismo, ICMUV, Universidad de Valencia, 46100 Valencia, Spain

Abstract

In this work, it is demonstrated numerically that an asymmetric Moiré fiber grating operated in reflection can provide the required spectral response to implement an all-optical fractional differentiator. In our case, the accumulated phase shift is not associated with a point phase shift, as when working with fiber Bragg gratings and long-period gratings with punctual defects, but is distributed all over the grating. The proposed device is supported by numerical simulations, and a dimensionless deviation factor is calculated to make quantitative analysis feasible. The performance of the proposed device is analyzed using numerical simulations by computing the fractional time derivatives of the complex field of an arbitrary transform-limited Gaussian pulse. A comparison with the performance given by theoretical differentiation is also presented.

Funder

European Union

Generalitat Valenciana of Spain

Publisher

MDPI AG

Subject

Statistics and Probability,Statistical and Nonlinear Physics,Analysis

Reference26 articles.

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4. Zhu, C., Wang, L., and Li, H. (2022). Phase-Inserted Fiber Gratings and Their Applications to Optical Filtering, Optical Signal Processing, and Optical Sensing: Review. Photonics, 9.

5. Li, Z., Zhang, S., Vázquez, J.M., Liu, Y., Khoe, G.D., Dorren, H.J.S., and Lenstra, D. (2006). Ultrafast optical differentiators based on asymmetric Mach-Zehnder interferometer. Proc. Symp. IEEE/LEOS, 173–176.

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