Coherent Spin Dynamics of Electrons in Two-Dimensional (PEA)PbI Perovskites
arXiv:2212.02878 · doi:10.1021/acs.nanolett.2c03975
Abstract
The versatile potential of lead halide perovskites and two-dimensional materials is merged in the Ruddlesen-Popper perovskites having outstanding optical properties. Here, the coherent spin dynamics in Ruddlesen-Popper (PEA)PbI perovskites are investigated by picosecond pump-probe Kerr rotation in an external magnetic field. The Larmor spin precession of resident electrons with a spin dephasing time of 190~ps is identified. The longitudinal spin relaxation time in weak magnetic fields measured by the spin inertia method is as long as 25~s. A significant anisotropy of the electron -factor with the in-plane value of and out-of-plane value of is found. The exciton out-of-plane -factor is measured to be of by magneto-reflectivity. This work contributes to the understanding of the spin-dependent properties of two-dimensional perovskites and their spin dynamics.
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