Evolution and Stability of Dark Holographic Solitons in Photorefractive Dissipative Systems
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Abstract
The dynamics evolution of dark holographic solutions in a dissipative system is investigated numerically provided that the double balance, i.e. diffraction is balanced by nonlinearity and loss is balanced by gain, is satisfied. The influence of the system parameters, such as the linear loss of the crystal, the external biased field and the angel between input beams, on the stable propagation of soliton beams is discussed numerically. Results show that such solitons can be easily amplified or absorbed by adjusting these system parameters. Furthermore, numerical simulations indicate that dissipative dark holographic solitons are stable for small perturbation on amplitude.
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ZHANG Hui-Lan, LIU Jin-Song. Evolution and Stability of Dark Holographic Solitons in Photorefractive Dissipative Systems[J]. Chin. Phys. Lett., 2006, 23(8): 2109-2112.
ZHANG Hui-Lan, LIU Jin-Song. Evolution and Stability of Dark Holographic Solitons in Photorefractive Dissipative Systems[J]. Chin. Phys. Lett., 2006, 23(8): 2109-2112.
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ZHANG Hui-Lan, LIU Jin-Song. Evolution and Stability of Dark Holographic Solitons in Photorefractive Dissipative Systems[J]. Chin. Phys. Lett., 2006, 23(8): 2109-2112.
ZHANG Hui-Lan, LIU Jin-Song. Evolution and Stability of Dark Holographic Solitons in Photorefractive Dissipative Systems[J]. Chin. Phys. Lett., 2006, 23(8): 2109-2112.
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