Hexagonal two-dimensional materials with broken inversion symmetry (as BN or transition metal dichalcodenides) are known to sustain chiral phonons with finite angular momentum, adding a further useful degree of freedom to the extraordinary entangled (electrical, optical, magnetic and mechanical) properties of these compounds. However, because of lattice symmetry constraints, such chiral modes are constrained to the corners of the Brillouin zone, allowing little freedom for manipulating the chiral features. In this work, we show how the application of uniaxial strain leads to the existence of new chiral modes in the vicinity of the zone center. We also show that such strain-induced chiral modes, unlike the ones pinned at the K points, can be...
We demonstrate a new method of achieving topologically protected states in an elastic hexagonal syst...
Twistronic heterostructures have recently emerged as a new class of quantum electronic materials wit...
We present an effective (minimal) theory for chiral two-dimensional materials. These materials posse...
In monolayer hexagonal lattices, the intravalley and intervalley scattering of electrons can involve...
Chiral phonons were initially proposed and further verified experimentally in two-dimensional (2D) h...
Chirality reveals symmetry breaking of the fundamental interaction of elementary particles. In conde...
Triggered by the recent successful observation of previously predicted phonon chirality in the monol...
Phonons with chirality determine the optical helicity of inelastic light scattering processes due to...
The robust transport of edge modes is perhaps the most useful property of topological materials. The...
Chirality characterizes an object that is not identical to its mirror image. In condensed matter phy...
The plethora of recent discoveries in the field of topological electronic insulators has inspired a ...
The diode effect means that carriers can only flow in one direction but not the other. While diode e...
Abstract We theoretically studied the phonon properties of the triangular‐, stripe‐, and honeycomb‐t...
We present a study of strain modulation effects on electronic structures of a two-dimensional single...
6 pages, 3 figuresWe show that a strained wire of a Weyl semimetal supports a new type of gapless ex...
We demonstrate a new method of achieving topologically protected states in an elastic hexagonal syst...
Twistronic heterostructures have recently emerged as a new class of quantum electronic materials wit...
We present an effective (minimal) theory for chiral two-dimensional materials. These materials posse...
In monolayer hexagonal lattices, the intravalley and intervalley scattering of electrons can involve...
Chiral phonons were initially proposed and further verified experimentally in two-dimensional (2D) h...
Chirality reveals symmetry breaking of the fundamental interaction of elementary particles. In conde...
Triggered by the recent successful observation of previously predicted phonon chirality in the monol...
Phonons with chirality determine the optical helicity of inelastic light scattering processes due to...
The robust transport of edge modes is perhaps the most useful property of topological materials. The...
Chirality characterizes an object that is not identical to its mirror image. In condensed matter phy...
The plethora of recent discoveries in the field of topological electronic insulators has inspired a ...
The diode effect means that carriers can only flow in one direction but not the other. While diode e...
Abstract We theoretically studied the phonon properties of the triangular‐, stripe‐, and honeycomb‐t...
We present a study of strain modulation effects on electronic structures of a two-dimensional single...
6 pages, 3 figuresWe show that a strained wire of a Weyl semimetal supports a new type of gapless ex...
We demonstrate a new method of achieving topologically protected states in an elastic hexagonal syst...
Twistronic heterostructures have recently emerged as a new class of quantum electronic materials wit...
We present an effective (minimal) theory for chiral two-dimensional materials. These materials posse...