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Surface-emitting circular DFB, disk-, and ring-Bragg resonator lasers with chirped gratings. II: nonuniform pumping and far-field patterns. | LitMetric

AI Article Synopsis

  • This paper builds upon previous research to analyze how different pumping methods affect the performance of surface-emitting chirped circular grating lasers.
  • By solving coupled-mode equations, the study compares thresholds and frequency detuning for uniform, Gaussian, and annular pumping profiles.
  • Results show that Gaussian pumping typically requires lower thresholds, but annular pumping enhances single-mode operation by providing better separation between fundamental and first-order modes in certain laser types.

Article Abstract

This is a continuation of our previous work [Opt. Express 16, 9155 (2008)]. In this paper we investigate the effect of nonuniform pumping on the modal properties of surface-emitting chirped circular grating lasers. By numerically solving the coupled-mode equations and matching the boundaries we compare and discuss the threshold pump levels and frequency detuning factors for three pumping profiles: uniform, Gaussian, and annular. Depending on the overlap of the pumping and modal profiles, Gaussian pumping results in the lowest threshold pump levels except for the fundamental mode of ring Bragg resonator laser, and annular pumping provides larger threshold discrimination between the fundamental and first-order modes of circular DFB and ring Bragg resonator lasers, which is favorable for single-mode operation in these lasers. We also study the far-field patterns of the fundamental modes of circular DFB, disk-, and ring- Bragg resonator lasers. Circular DFB and ring Bragg resonator lasers have the first-order dominating peak, while disk Bragg resonator laser exhibits the zeroth-order dominating peak.

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Source
http://dx.doi.org/10.1364/oe.17.000001DOI Listing

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