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Numerical Demonstration of Wavelength-Insensitive Tuning Characteristics of Ladder-Type Tunable Filter for a Widely Tunable Laser Diode

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Published 9 May 2006 Copyright (c) 2006 The Japan Society of Applied Physics
, , Citation Seok-Hwan Jeong et al 2006 Jpn. J. Appl. Phys. 45 4090 DOI 10.1143/JJAP.45.4090

1347-4065/45/5R/4090

Abstract

We propose a wavelength-insensitive tunable ladder-type interferometric filter having a novel configuration for use in a widely tunable laser diode. The spectral characteristics of the proposed device are numerically analyzed and compared with those of our previously reported device regarding transmittance and bandwidth. Wavelength-insensitive tuning and flat-topped filter spectra are obtained by optimizing device parameters. We also discuss the applicability of the proposed ladder filter to a widely tunable laser. The proposed tunable laser has a nearly constant threshold current density with tuning current injection. The oscillation frequency of the laser diode can be stabilized by introducing chirping into the ladder filter to obtain a single passband response. These high-performance spectral characteristics make the proposed device feasible for wavelength-division-multiplexing-based systems.

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10.1143/JJAP.45.4090