We review some recent (mostly ours) results on the Anderson localization of light and electron waves in complex disordered systems, including: (i) left-handed metamaterials, (ii) magnetoactive optical structures, (iii) graphene superlattices, and (iv) nonlinear dielectric media. First, we demonstrate that left-handed metamaterials can significantly suppress localization of light and lead to an anomalously enhanced transmission. This suppression is essential at the long-wavelength limit in the case of normal incidence, at specific angles of oblique incidence (Brewster anomaly), and in the vicinity of the zero-ε or zero-μ frequencies for dispersive metamaterials. Remarkably, in disordered samples comprised of alternating normal and left-hande...
Moiré lattices consist of two superimposed identical periodic structures with a relative rotation an...
ABSTRACT: A comprehensive study of the properties of light propagation through one-dimensional photo...
Transport inhibition via Anderson localization is ubiquitous in disordered periodic lattices. Howeve...
This is a review of some recent (mostly ours) results on Anderson localization of light and electron...
We perform a theoretical investigation of light propagation and Anderson localization in one-dimensi...
Over the past decade, the Anderson localization of light and a wide variety of associated phenomena ...
We study wave propagation in mixed, 1D disordered stacks of alternating right- and left-handed layer...
Anderson localization marks a halt of diffusive wave propagation in disordered systems. Despite exte...
Comprehensive theoretical and numerical studies of the effects of dispersion and absorption on the A...
Over the past decade, the Anderson localization of light and a wide variety of associated phenomena ...
We theoretically investigate light propagation and Anderson localization in one-dimensional disorde...
Anderson localization (AL) is a ubiquitous interference phenomenon in which waves fail to propagate ...
The Anderson localization of light in one-dimensional disordered photonic superlattices is theoretic...
Complex dielectric structures play an important role in a wide range of optical applications such as...
We study ID stacks comprising alternating layers of normal and metamaterials, with disorder in both ...
Moiré lattices consist of two superimposed identical periodic structures with a relative rotation an...
ABSTRACT: A comprehensive study of the properties of light propagation through one-dimensional photo...
Transport inhibition via Anderson localization is ubiquitous in disordered periodic lattices. Howeve...
This is a review of some recent (mostly ours) results on Anderson localization of light and electron...
We perform a theoretical investigation of light propagation and Anderson localization in one-dimensi...
Over the past decade, the Anderson localization of light and a wide variety of associated phenomena ...
We study wave propagation in mixed, 1D disordered stacks of alternating right- and left-handed layer...
Anderson localization marks a halt of diffusive wave propagation in disordered systems. Despite exte...
Comprehensive theoretical and numerical studies of the effects of dispersion and absorption on the A...
Over the past decade, the Anderson localization of light and a wide variety of associated phenomena ...
We theoretically investigate light propagation and Anderson localization in one-dimensional disorde...
Anderson localization (AL) is a ubiquitous interference phenomenon in which waves fail to propagate ...
The Anderson localization of light in one-dimensional disordered photonic superlattices is theoretic...
Complex dielectric structures play an important role in a wide range of optical applications such as...
We study ID stacks comprising alternating layers of normal and metamaterials, with disorder in both ...
Moiré lattices consist of two superimposed identical periodic structures with a relative rotation an...
ABSTRACT: A comprehensive study of the properties of light propagation through one-dimensional photo...
Transport inhibition via Anderson localization is ubiquitous in disordered periodic lattices. Howeve...