Abstract
In this paper, we report the theoretical results about operating vector solitons with chirped sech pulse shapes. In the operation, the shapes of temporal pulses and corresponding optical spectra in orthogonal directions will change, which are based on soliton parameters. When input orthogonal pulses have the same central wavelength of 1064 nm, the shift from the central wavelength always occurs for orthogonal pulses. When input orthogonal pulses have different central wavelengths of 1063 nm and 1065 nm, output pulse shapes and optical spectra with obvious multiple peak/dip structures can be achieved in orthogonal directions. Our theoretical results are meaningful for the study of vector soliton dynamics and have potential applications in optical communication and optical sensing.
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CITATION STYLE
Zhou, Y., Zhang, K., Liao, M., Zhao, G., & Fang, Y. (2022). Operating Vector Solitons with Chirped Sech Pulse Shapes. Photonics, 9(3). https://doi.org/10.3390/photonics9030143
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