Topology and symmetry have emerged as compelling guiding principles to predict and harness the propagation of waves in natural and artificial materials. Be it for quantum particles (such as electrons) or classical waves (such as light, sound or mechanical motion), these concepts have so far been mostly developed in idealized scenarios, in which the wave amplitude is neither attenuated nor amplified, and time evolution is unitary. In recent years, however, there has been a considerable push to explore the consequences of topology and symmetries in non-conservative, non-equilibrium or non-Hermitian systems. A plethora of driven artificial materials has been reported, blurring the lines between a wide variety of fields in physics and engineeri...
Non-Hermiticity enriches topological phases beyond the existing Hermitian framework. Whereas their u...
Physical properties of a topological origin are known to be robust against small perturbations. This...
Predictive theory to geometrically engineer devices and materials in continuum systems to have desir...
In the past few years, concepts from non-Hermitian (NH) physics, originally developed within the con...
Topological edge modes are excitations that are localized at the materials' edges and yet are charac...
The recent discovery of topological phases of condensed matter has recently spawned a quest for thei...
Topology has manifestations in physics ranging from the field of condensed matter to photonics. This...
Thesis (Ph.D.)--University of Washington, 2018Due to the recent discovery of topological insulators ...
Both theoretical and experimental studies of topological phases in non-Hermitian systems have made a...
Metamaterials are artificially structured materials that are engineered to interact with waves in ex...
Geometry and topology have emerged as powerful tools for understanding a wide range of phenomena in ...
In this talk, I will review our recent progress towards the concept, design and realization of magne...
Hydrodynamics is shown to induce non-Hermitian topological phenomena in ordinary, passive soft matte...
This manuscript adresses works in theoretical physics that deal with topological aspects of propagat...
Combating the effects of disorder on light transport in micro- and nano-integrated photonic devices ...
Non-Hermiticity enriches topological phases beyond the existing Hermitian framework. Whereas their u...
Physical properties of a topological origin are known to be robust against small perturbations. This...
Predictive theory to geometrically engineer devices and materials in continuum systems to have desir...
In the past few years, concepts from non-Hermitian (NH) physics, originally developed within the con...
Topological edge modes are excitations that are localized at the materials' edges and yet are charac...
The recent discovery of topological phases of condensed matter has recently spawned a quest for thei...
Topology has manifestations in physics ranging from the field of condensed matter to photonics. This...
Thesis (Ph.D.)--University of Washington, 2018Due to the recent discovery of topological insulators ...
Both theoretical and experimental studies of topological phases in non-Hermitian systems have made a...
Metamaterials are artificially structured materials that are engineered to interact with waves in ex...
Geometry and topology have emerged as powerful tools for understanding a wide range of phenomena in ...
In this talk, I will review our recent progress towards the concept, design and realization of magne...
Hydrodynamics is shown to induce non-Hermitian topological phenomena in ordinary, passive soft matte...
This manuscript adresses works in theoretical physics that deal with topological aspects of propagat...
Combating the effects of disorder on light transport in micro- and nano-integrated photonic devices ...
Non-Hermiticity enriches topological phases beyond the existing Hermitian framework. Whereas their u...
Physical properties of a topological origin are known to be robust against small perturbations. This...
Predictive theory to geometrically engineer devices and materials in continuum systems to have desir...