Controlling light transport in nonlinear active environments is a topic of considerable interest in the field of optics. In such complex arrangements, of particular importance is to devise strategies to subdue chaotic behaviour even in the presence of gain/loss and nonlinearity, which often assume adversarial roles. Quite recently, notions of parity-time (PT) symmetry have been suggested in photonic settings as a means to enforce stable energy flow in platforms that simultaneously employ both amplification and attenuation. Here we report the experimental observation of optical solitons in PT-symmetric lattices. Unlike other non-conservative nonlinear arrangements where self-trapped states appear as fixed points in the parameter space of the governing equations, discrete PT solitons form a continuous parametric family of solutions. The possibility of synthesizing PT-symmetric saturable absorbers, where a nonlinear wave finds a lossless path through an otherwise absorptive system is also demonstrated.
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Univ Belgrade, Fac Phys, Studentski Trg 12, Belgrade 11000, SerbiaUniv Belgrade, Fac Phys, Studentski Trg 12, Belgrade 11000, Serbia
Stojanovic, Sasa
Strinic, Aleksandra
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Univ Belgrade, Inst Phys, POB 68, Belgrade 11080, Serbia
Texas A&M Univ Qatar, POB 23874, Doha, QatarUniv Belgrade, Fac Phys, Studentski Trg 12, Belgrade 11000, Serbia
Strinic, Aleksandra
Petrovic, Milan
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Texas A&M Univ Qatar, POB 23874, Doha, Qatar
Inst Phys, POB 57, Belgrade 11001, SerbiaUniv Belgrade, Fac Phys, Studentski Trg 12, Belgrade 11000, Serbia