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Seven-photon absorption from Na + /Bi 3+ -alloyed Cs 2 AgInCl 6 perovskites.

Shiling JinRenfu LiJiwen ZhuTao PangTianmin WuHongbing ZhanYuanhui ZhengFeng HuangXueyuan ChenDaqin Chen
Published in: Materials horizons (2023)
Nonlinear multi-phonon (2-7) absorption in the Na + /Bi 3+ -alloyed Cs 2 AgInCl 6 lead-free double perovskites with ∼100% photoluminescence quantum yield and superior stability is observed for the first time, which can be pumped by a femtosecond laser in a wide spectral range (800-2600 nm). First-principles calculations verify that the parity-forbidden transition from the valence band maximum and conduction band minimum (at the Γ point) is not broken by Na + /Bi 3+ doping, and strong optical band-to-band absorption occurs at the L & X points. Time-resolved emission spectra evidence that single-photon and multi-photon pumping leads to the same self-trapped exciton transition and high-order nonlinear absorption will not induce a remarkable thermal effect. Finally, we demonstrate that the Cs 2 Na 0.4 Ag 0.6 In 0.99 Bi 0.01 Cl 6 DP shows great potential for next-generation wavelength-selective and highly sensitive multiphoton imaging applications.
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