Javascript must be enabled to continue!
Solid‐State Molecular Motions in Organic THz Generators
View through CrossRef
AbstractOrganic nonlinear optical salt crystals are widely used as efficient broadband THz generators. Although solid state molecular motions of organic crystals can greatly influence THz generation characteristics, their origin and effects on THz photonics are not clearly identified. In this work, the origin of solid‐state molecular motions of the state‐of‐the‐art nonlinear optical organic salt crystals and their effects on THz generation characteristics are theoretically investigated. A model crystal, HMQ‐TMS (2‐(4‐hydroxy‐3‐methoxystyryl)‐1‐methylquinolinium 2,4,6‐trimethylbenzenesulfonate) with large macroscopic optical nonlinearity, which is very attractive for intense broadband and narrowband THz wave generation, is chosen. The solid‐state molecular vibrations of HMQ‐TMS crystals can be classified in three frequency regions: phonon mode region, intramolecular motion region, and their mixing region. For the first time for ionic organic crystalline THz generators, the contributions of cationic chromophores and anionic matchmakers on each of vibrational modes are quantitatively separated. In addition, the influence of solid‐state molecular vibrations of HMQ‐TMS crystals on the generated THz spectra is investigated. These results provide an essential information for design of new organic nonlinear optical salt crystals for THz generators as well as detectors and for optimization of THz generation performance.
Title: Solid‐State Molecular Motions in Organic THz Generators
Description:
AbstractOrganic nonlinear optical salt crystals are widely used as efficient broadband THz generators.
Although solid state molecular motions of organic crystals can greatly influence THz generation characteristics, their origin and effects on THz photonics are not clearly identified.
In this work, the origin of solid‐state molecular motions of the state‐of‐the‐art nonlinear optical organic salt crystals and their effects on THz generation characteristics are theoretically investigated.
A model crystal, HMQ‐TMS (2‐(4‐hydroxy‐3‐methoxystyryl)‐1‐methylquinolinium 2,4,6‐trimethylbenzenesulfonate) with large macroscopic optical nonlinearity, which is very attractive for intense broadband and narrowband THz wave generation, is chosen.
The solid‐state molecular vibrations of HMQ‐TMS crystals can be classified in three frequency regions: phonon mode region, intramolecular motion region, and their mixing region.
For the first time for ionic organic crystalline THz generators, the contributions of cationic chromophores and anionic matchmakers on each of vibrational modes are quantitatively separated.
In addition, the influence of solid‐state molecular vibrations of HMQ‐TMS crystals on the generated THz spectra is investigated.
These results provide an essential information for design of new organic nonlinear optical salt crystals for THz generators as well as detectors and for optimization of THz generation performance.
Related Results
Terahertz emission spectroscopy of multiferroic bismuth ferrite : insights into ultrafast currents and phonon dynamics
Terahertz emission spectroscopy of multiferroic bismuth ferrite : insights into ultrafast currents and phonon dynamics
Spectroscopie d émission Térahertz du ferrite de bismuth multiferroïque : aperçus sur les courants ultra-rapides et la dynamique des phonons
La technologie térahert...
Quasi-two-dimensional van der Waals ferromagnetic semiconductor CrGeTe<sub>3</sub> studied by THz spectroscopy
Quasi-two-dimensional van der Waals ferromagnetic semiconductor CrGeTe<sub>3</sub> studied by THz spectroscopy
The quasi-two-dimensional van der Waals intrinsic ferromagnetic semiconductor CrGeTe<sub>3</sub> possesses both a narrow semiconductor band gap and ferromagnetic proper...
Frequency‐Dependent Demethylation of Cancer DNAs by High‐Power Terahertz Radiation
Frequency‐Dependent Demethylation of Cancer DNAs by High‐Power Terahertz Radiation
A high‐power broadband terahertz (THz) system generating THz waves at the 10 mW level is developed to study the demethylation behavior of cancer DNAs by strong THz‐field irradiatio...
Phonon‐Suppressing Intermolecular Adhesives: Catechol‐Based Broadband Organic THz Generators
Phonon‐Suppressing Intermolecular Adhesives: Catechol‐Based Broadband Organic THz Generators
AbstractSolid‐state molecular phonons play a crucial role in the performance of diverse photonic and optoelectronic devices. In this work, new organic terahertz (THz) generators ba...
Nonlinear Analytical Model of Localized Sub-THz and THz Rectifications in FET Power Detectors
Nonlinear Analytical Model of Localized Sub-THz and THz Rectifications in FET Power Detectors
A nonlinear analytical model for THz FET power detectors based on their
distributed RC network is presented. This empirical model works well for
both drain-unbiased and drain-biase...
Nonlinear Analytical Model of Localized Sub-THz and THz Rectifications in FET Power Detectors
Nonlinear Analytical Model of Localized Sub-THz and THz Rectifications in FET Power Detectors
<div>A nonlinear analytical model for THz FET power detectors based on their distributed RC network is presented. This empirical model works well for both drain-unbiased and ...
Caracterització optoelectrònica de materials bidimensionals a altes freqüencies
Caracterització optoelectrònica de materials bidimensionals a altes freqüencies
Two-dimensional materials have a lot of applications in the electronic and photonic device design field, especially when they need to be flexible and transparent. In particular, hi...
Spectroscopie THz par photo-mélange d’impulsions à dérive de fréquence sur antennes photo-conductrices
Spectroscopie THz par photo-mélange d’impulsions à dérive de fréquence sur antennes photo-conductrices
Les ondes térahertz (THz) ont suscité un intérêt scientifique majeur au cours des dernières décennies, apportant de nouvelles possibilités dans de nombreux domaines d’applications ...

