The modulation of valley polarization in one single system is of important fundamental and practical importance in quantum information technology. Here, through the first-principles calculations, we identify single-layer TcIrGe2S6 as a tantalizing candidate for realizing the modulation of valley polarization. Arising from the combination of inversion symmetry breaking and intrinsic magnetic exchange interaction, single-layer TcIrGe2S6 exhibits spontaneous valley polarization. The value of valley polarization in the conduction band is 161 meV, favorable for achieving the intriguing anomalous valley Hall effect. Furthermore, single-layer TcIrGe2S6 possesses ferroelectric order. More remarkably, its ferroelectric and valley physics can be stro...
Two–dimensional (2D) transition metal dichalcogenides endow individually addressable valleys in mome...
Manipulation of the valley degree of freedom provides a novel paradigm in quantum information techno...
Crystal symmetry and its breaking are the core of modern condensed matter physics and materials scie...
The modulation of valley polarization in one single system is of important fundamental and practical...
The valley index is a promising degree of freedom for information processing in electronic devices. ...
The current valleytronics research is based on the paradigm of time-reversal-connected valleys in tw...
The limitation of suitable anomalous valley Hall effect (AVHE) materials has seriously hindered the ...
A trend in future electronics is to utilize internal degrees of freedom of electron, in addition to ...
One of the key problems in valleytronics is to realize valley polarization. Ferrovalley semiconducto...
In this Letter, a tunable valley polarization is investigated for honeycomb systems with broken inve...
Two-dimensional group VI transition-metal dichalcogenides (TMDs) provide a promising platform to enc...
We introduce a physical model to describe the influence of a perpendicular electric field on circula...
The valley degree of freedom in layered transition-metal dichalcogenides provides an opportunity to ...
Atomically thin layers of group VI transition metal dichalcogenides (TMDCs) have been recognized as ...
In monolayer group-VI transition metal dichalcogenides, charge carriers have spin and valley degrees...
Two–dimensional (2D) transition metal dichalcogenides endow individually addressable valleys in mome...
Manipulation of the valley degree of freedom provides a novel paradigm in quantum information techno...
Crystal symmetry and its breaking are the core of modern condensed matter physics and materials scie...
The modulation of valley polarization in one single system is of important fundamental and practical...
The valley index is a promising degree of freedom for information processing in electronic devices. ...
The current valleytronics research is based on the paradigm of time-reversal-connected valleys in tw...
The limitation of suitable anomalous valley Hall effect (AVHE) materials has seriously hindered the ...
A trend in future electronics is to utilize internal degrees of freedom of electron, in addition to ...
One of the key problems in valleytronics is to realize valley polarization. Ferrovalley semiconducto...
In this Letter, a tunable valley polarization is investigated for honeycomb systems with broken inve...
Two-dimensional group VI transition-metal dichalcogenides (TMDs) provide a promising platform to enc...
We introduce a physical model to describe the influence of a perpendicular electric field on circula...
The valley degree of freedom in layered transition-metal dichalcogenides provides an opportunity to ...
Atomically thin layers of group VI transition metal dichalcogenides (TMDCs) have been recognized as ...
In monolayer group-VI transition metal dichalcogenides, charge carriers have spin and valley degrees...
Two–dimensional (2D) transition metal dichalcogenides endow individually addressable valleys in mome...
Manipulation of the valley degree of freedom provides a novel paradigm in quantum information techno...
Crystal symmetry and its breaking are the core of modern condensed matter physics and materials scie...