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Room temperature near unity spin polarization in 2D Van der Waals heterostructures.


ABSTRACT: The generation and manipulation of spin polarization at room temperature are essential for 2D van der Waals (vdW) materials-based spin-photonic and spintronic applications. However, most of the high degree polarization is achieved at cryogenic temperatures, where the spin-valley polarization lifetime is increased. Here, we report on room temperature high-spin polarization in 2D layers by reducing its carrier lifetime via the construction of vdW heterostructures. A near unity degree of polarization is observed in PbI2 layers with the formation of type-I and type-II band aligned vdW heterostructures with monolayer WS2 and WSe2. We demonstrate that the spin polarization is related to the carrier lifetime and can be manipulated by the layer thickness, temperature, and excitation wavelength. We further elucidate the carrier dynamics and measure the polarization lifetime in these heterostructures. Our work provides a promising approach to achieve room temperature high-spin polarizations, which contribute to spin-photonics applications.

SUBMITTER: Zhang D 

PROVIDER: S-EPMC7477097 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Room temperature near unity spin polarization in 2D Van der Waals heterostructures.

Zhang Danliang D   Liu Ying Y   He Mai M   Zhang Ao A   Chen Shula S   Tong Qingjun Q   Huang Lanyu L   Zhou Zhiyuan Z   Zheng Weihao W   Chen Mingxing M   Braun Kai K   Meixner Alfred J AJ   Wang Xiao X   Pan Anlian A  

Nature communications 20200907 1


The generation and manipulation of spin polarization at room temperature are essential for 2D van der Waals (vdW) materials-based spin-photonic and spintronic applications. However, most of the high degree polarization is achieved at cryogenic temperatures, where the spin-valley polarization lifetime is increased. Here, we report on room temperature high-spin polarization in 2D layers by reducing its carrier lifetime via the construction of vdW heterostructures. A near unity degree of polarizati  ...[more]

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