Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Nonreciprocal photonic spin Hall effect of magnetic Weyl semimetals

View through CrossRef
Magnetic Weyl semimetals allow the unique opportunities for the realizations of nonreciprocal optical properties, thermal radiation, and anomalous photon thermal Hall effect without the requirement of an external magnetic field. Here, we theoretically investigate the photonic spin Hall effect in the magnetic Weyl semimetal-based multilayered structure and demonstrate that this effect is nontrivial and nonreciprocal. Its induced nontrivial photonic spin Hall effect originates from the large differences between the reflectances under different polarized waves. In addition, the generation of this kind of nonreciprocal photonic spin Hall effect is guaranteed by the simultaneously broken space inversion symmetry and time reversal symmetry of this specific structure. Specially, the responses of nonreciprocal photonic spin Hall effect can sustain within a certain range of incident angle and it can be effectively manipulated by varying the Fermi energy of magnetic Weyl semimetals. Our work expands the fields of the photonic spin Hall effects and suggests magnetic Weyl semimetals potential candidates in the next-generation nonreciprocal spin photonic devices.
Title: Nonreciprocal photonic spin Hall effect of magnetic Weyl semimetals
Description:
Magnetic Weyl semimetals allow the unique opportunities for the realizations of nonreciprocal optical properties, thermal radiation, and anomalous photon thermal Hall effect without the requirement of an external magnetic field.
Here, we theoretically investigate the photonic spin Hall effect in the magnetic Weyl semimetal-based multilayered structure and demonstrate that this effect is nontrivial and nonreciprocal.
Its induced nontrivial photonic spin Hall effect originates from the large differences between the reflectances under different polarized waves.
In addition, the generation of this kind of nonreciprocal photonic spin Hall effect is guaranteed by the simultaneously broken space inversion symmetry and time reversal symmetry of this specific structure.
Specially, the responses of nonreciprocal photonic spin Hall effect can sustain within a certain range of incident angle and it can be effectively manipulated by varying the Fermi energy of magnetic Weyl semimetals.
Our work expands the fields of the photonic spin Hall effects and suggests magnetic Weyl semimetals potential candidates in the next-generation nonreciprocal spin photonic devices.

Related Results

Weyl semimetals in optical lattices: moving and merging of Weyl points, and hidden symmetry at Weyl points
Weyl semimetals in optical lattices: moving and merging of Weyl points, and hidden symmetry at Weyl points
Abstract We propose to realize Weyl semimetals in a cubic optical lattice. We find that there exist three distinct Weyl semimetal phases in the cubic optical lattice for ...
Unidirectional Maxwellian spin waves
Unidirectional Maxwellian spin waves
Abstract In this article, we develop a unified perspective of unidirectional topological edge waves in nonreciprocal media. We focus on the inherent role of photonic...
Two-dimensional function photonic crystal
Two-dimensional function photonic crystal
Photonic crystal is a kind of periodic optical nanostructure consisting of two or more materials with different dielectric constants, which has attracted great deal of attention be...
Modification of spin electronic properties of Fen/GaSe monolayer adsorption system
Modification of spin electronic properties of Fen/GaSe monolayer adsorption system
Group-ⅢA metal-monochalcogenides have been extensively studied due to their unique optoelectronic and spin electronic properties. To realize the device applications, modifying thei...
Electronic and magnetic properties of two dimensional crystals
Electronic and magnetic properties of two dimensional crystals
<p>In the last few years, two dimensional crystals have become available for experimental studies. Good examples of such systems are monolayers and bilayers of graphene and m...
Magnetic cloak made of NdFeB permanent magnetic material
Magnetic cloak made of NdFeB permanent magnetic material
In the past few years, the concept of an electromagnetic invisibility cloak has received much attention. Based on the pioneering theoretical work, invisibility cloaks have been gre...
Superconductivity in Weyl semimetals with time reversal symmetry
Superconductivity in Weyl semimetals with time reversal symmetry
Abstract This theoretical study delves into the superconducting traits of Weyl semimetals that possess time reversal symmetry, utilizing the Bogoliubov–de Gennes equ...
Dissipationless transport signature of topological nodal lines
Dissipationless transport signature of topological nodal lines
Abstract Topological materials, such as topological insulators or semimetals, usually not only reveal the non-trivial properties of their electronic wavefunctions through...

Back to Top