We address the existence and properties of multipole solitons localized at a thermally insulating interface between uniform or layered thermal media and a linear dielectric. We find that in the case of uniform media, only surface multipoles with less than three poles can be stable. In contrast, we reveal that periodic alternation of the thermo-optic coefficient in layered thermal media makes possible the stabilization of higher-order multipoles.Peer ReviewedPostprint (published version
We predict the existence and address the stability of two-dimensional surface solitons featuring top...
We predict that the interface of materials with defocusing thermal nonlinearities supports stable fu...
We predict that the interface of materials with defocusing thermal nonlinearities supports stable fu...
We address the existence and properties of multipole solitons localized at a thermally insulating in...
We address the existence and properties of solitons in layered thermal media made of alternating foc...
We address the existence and properties of solitons in layered thermal media made of alternating foc...
We discover multipole-mode solitons supported by the surface between two distinct periodic lattices ...
We discover multipole-mode solitons supported by the surface between two distinct periodic lattices ...
We discover multipole-mode solitons supported by the surface between two distinct periodic lattices ...
We address the stabilization of dipole solitons in nonlocal nonlinear materials by two different app...
We address the stabilization of dipole solitons in nonlocal nonlinear materials by two different app...
We predict that the interface of materials with defocusing thermal nonlinearities supports stable fu...
We address the stability of multipole-mode solitons in nonlocal Kerr-type nonlinear media. Such soli...
We address the stability of multipole-mode solitons in nonlocal Kerr-type nonlinear media. Such soli...
We predict the existence and address the stability of two-dimensional surface solitons featuring top...
We predict the existence and address the stability of two-dimensional surface solitons featuring top...
We predict that the interface of materials with defocusing thermal nonlinearities supports stable fu...
We predict that the interface of materials with defocusing thermal nonlinearities supports stable fu...
We address the existence and properties of multipole solitons localized at a thermally insulating in...
We address the existence and properties of solitons in layered thermal media made of alternating foc...
We address the existence and properties of solitons in layered thermal media made of alternating foc...
We discover multipole-mode solitons supported by the surface between two distinct periodic lattices ...
We discover multipole-mode solitons supported by the surface between two distinct periodic lattices ...
We discover multipole-mode solitons supported by the surface between two distinct periodic lattices ...
We address the stabilization of dipole solitons in nonlocal nonlinear materials by two different app...
We address the stabilization of dipole solitons in nonlocal nonlinear materials by two different app...
We predict that the interface of materials with defocusing thermal nonlinearities supports stable fu...
We address the stability of multipole-mode solitons in nonlocal Kerr-type nonlinear media. Such soli...
We address the stability of multipole-mode solitons in nonlocal Kerr-type nonlinear media. Such soli...
We predict the existence and address the stability of two-dimensional surface solitons featuring top...
We predict the existence and address the stability of two-dimensional surface solitons featuring top...
We predict that the interface of materials with defocusing thermal nonlinearities supports stable fu...
We predict that the interface of materials with defocusing thermal nonlinearities supports stable fu...