Engineering pseudo-spin and valley degrees of freedom using quantum spin Hall and valley Hall effects has opened up remarkable possibilities for highly efficient and robust signal transport in time-reversal invariant photonic systems. Here we present a spin-valley locked photonic crystal that has distinct signs of chirality of sublattices in a honeycomb unit cell. We show that the photonic crystal has an insulating bulk dispersion and sublattice-dependent spin-valley coupled gapless edge states by exploiting a coupled dipole method and demonstrate valley-selective propagation by controlling spin state of an external dipole source. The interplay between spin, valley and sublattice shows a judicious way for one-way photon transport by using m...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
A trend in future electronics is to utilize internal degrees of freedom of electron, in addition to ...
Recently discovered1,2 valley photonic crystals (VPCs) mimic many of the unusual properties of two-d...
Topological protection in photonics offers new prospects for guiding and manipulating classical and ...
Topological protection in photonics offers new prospects for guiding and manipulating classical and ...
Conventional electronics are based invariably on the intrinsic degrees of freedom of an electron, na...
Chiral surface states along the zigzag edge of a valley photonic crystal in the honeycomb lattice ar...
Abstract Topologically protected photonic edge states offer unprecedented robust propagation of phot...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
A trend in future electronics is to utilize internal degrees of freedom of electron, in addition to ...
Recently discovered1,2 valley photonic crystals (VPCs) mimic many of the unusual properties of two-d...
Topological protection in photonics offers new prospects for guiding and manipulating classical and ...
Topological protection in photonics offers new prospects for guiding and manipulating classical and ...
Conventional electronics are based invariably on the intrinsic degrees of freedom of an electron, na...
Chiral surface states along the zigzag edge of a valley photonic crystal in the honeycomb lattice ar...
Abstract Topologically protected photonic edge states offer unprecedented robust propagation of phot...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
We demonstrate room temperature chiral coupling of valley excitons in a transition metal dichalcogen...
A trend in future electronics is to utilize internal degrees of freedom of electron, in addition to ...