4.6 Article

Terahertz Emission via Optical Rectification in a Metal-Free Perovskite Crystal

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ACS PHOTONICS
卷 10, 期 11, 页码 4022-4030

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AMER CHEMICAL SOC
DOI: 10.1021/acsphotonics.3c00918

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terahertz emission; perovskites; spectroscopy

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This study reports on the emission of high-intensity pulsed terahertz radiation from metal-free halide perovskite single crystal under femtosecond illumination. The angular dependence of THz emission was found to be modulated by phonon resonances, and the THz pulses showed a high peak-to-peak electric field strength.
We report on the emission of high-intensity pulsed terahertz radiation from the metal-free halide perovskite single crystal methyl-DABCO ammonium iodide (MDNI) under femtosecond illumination. The power and angular dependence of the THz output implicate optical rectification of the 800 nm pump as the mechanism of THz generation. Further characterization finds that, for certain crystal orientations, the angular dependence of THz emission is modulated by phonon resonances attributable to the motion of the methyl-DABCO moiety. At maximum, the THz emission spectrum of MDNI is free from significant phonon resonances, resulting in THz pulses with a temporal width of <900 fs and a peak-to-peak electric field strength of approximately 0.8 kV cm(-1)& horbar;2 orders of magnitude higher than any other reported halide perovskite emitters. Our results point toward metal-free perovskites as a promising new class of THz emitters that brings to bear many of the advantages enjoyed by other halide perovskite materials. In particular, the broad tunability of optoelectronic properties and ease of fabrication of perovskite materials opens up the possibility of further optimizing the THz emission properties within this material class.

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