Self-Accelerating Self-Trapped Optical Beams
Ido E. Kaminer, Mordechai Segev, Demetrios N. Christodoulides
Abstract
Ido E. Kaminer, Mordechai Segev, Demetrios N. Christodoulides
Abstract
We present self-accelerating self-trapped beams in nonlinear optical media, exhibiting self-focusing and self-defocusing Kerr and saturable nonlinearities, as well as a quadratic response. In Kerr and saturable media such beams are stable under self-defocusing and weak self-focusing, whereas for strong self-focusing the beams off-shoot solitons while their main lobe continues to accelerate. Self-accelerating self-trapped wave packets are universal, and can also be found in matter waves, plasma, etc.
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We present self-accelerating self-trapped beams in nonlinear optical media, exhibiting self-focusing and self-defocusing Kerr and saturable nonlinearities, as well as a quadratic response. In Kerr and saturable media such beams are stable under self-defocusing and weak self-focusing, whereas for strong self-focusing the beams off-shoot solitons while their main lobe continues to accelerate. Self-accelerating self-trapped wave packets are universal, and can also be found in matter waves, plasma, etc.
Key concepts: Self-focusing, Physics, Self-phase modulation, Kerr effect, Optics, Nonlinear optics, Wave packet, Saturable absorption