Waveguides with Absorbing Boundaries: Nonlinearity Controlled by an Exceptional Point and Solitons
arXiv:1706.04085 · doi:10.1103/PhysRevLett.119.033905
Abstract
We reveal the existence of continuous families of guided single-mode solitons in planar waveguides with weakly nonlinear active core and absorbing boundaries. Stable propagation of TE and TM-polarized solitons is accompanied by attenuation of all other modes, i.e. the waveguide features properties of conservative and dissipative systems. If the linear spectrum of the waveguide possesses exceptional points, which occurs in the case of TM-polarization, an originally focusing (defocusing) material nonlinearity may become effectively defocusing (focusing). This occurs due to the geometric phase of the carried eigenmode when the surface impedance encircles the exceptional point. In its turn the change of the effective nonlinearity ensures the existence of dark (bright) solitons in spite of focusing (defocusing) Kerr nonlinearity of the core. The existence of an exceptional point can also result in anomalous enhancement of the effective nonlinearity. In terms of practical applications the nonlinearity of the reported waveguide can be manipulated by controlling the properties of the absorbing cladding.
Published version
References in corpus (7)
- Making Sense of Non-Hermitian Hamiltonians
- Reversing the Pump-Dependence of a Laser at an Exceptional Point
- Introduction: Localized Structures in Dissipative Media: From Optics to Plant Ecology
- Stable localized modes in asymmetric waveguides with gain and loss
- Families of stationary modes in complex potentials
- Nontwist non-Hamiltonian systems
- Modes and exceptional points in waveguides with impedance boundary conditions