The ability to initialize and control long-lived spin populations in lead halide perovskites is essential to enable their use in spintronics technologies. Here, we show that the interlayer exciton observed in the photoluminescence spectrum of a (BA)2PbI4/WSe2 monolayer heterostructure below the intralayer exciton transitions exhibits circular dichroism, whose sign can be modulated by tuning the excitation energy. Equilibrium and transient absorption measurements reveal an additional absorptive feature between the A and B excitons of WSe2 with hybrid character. This resonance arises from hybridized valence band states of the two materials and plays a key role in controlling the helicity of the interlayer exciton emission. The tunable spin polarization demonstrated here, with the WSe2 monolayer effectively acting as a tunable spin filter, represents an important step toward the use of 2D perovskites in opto-spintronics applications.

Spin Injection and Emission Helicity Switching in a 2D Perovskite/WSe 2 Heterostructure

Gucci, Francesco;Palai, Swaroop;Genco, Armando;Baserga, Alessandro;Gadermaier, Christoph;Cerullo, Giulio;Dal Conte, Stefano;
2026-01-01

Abstract

The ability to initialize and control long-lived spin populations in lead halide perovskites is essential to enable their use in spintronics technologies. Here, we show that the interlayer exciton observed in the photoluminescence spectrum of a (BA)2PbI4/WSe2 monolayer heterostructure below the intralayer exciton transitions exhibits circular dichroism, whose sign can be modulated by tuning the excitation energy. Equilibrium and transient absorption measurements reveal an additional absorptive feature between the A and B excitons of WSe2 with hybrid character. This resonance arises from hybridized valence band states of the two materials and plays a key role in controlling the helicity of the interlayer exciton emission. The tunable spin polarization demonstrated here, with the WSe2 monolayer effectively acting as a tunable spin filter, represents an important step toward the use of 2D perovskites in opto-spintronics applications.
2026
2D perovskite-transition metal dichalcogenide heterostructures
charge transfer
interlayer exciton
spin polarization
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1316365
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