The University of Osaka · 공학
마카토 나카지마 교수의 연구실은 탄소 기반 소재를 초월해, 테라헤르츠 파장 대역에서의 물리적 현상과 응용을 중심으로 연구를 전개하고 있습니다. 특히, 반도체, 페로자성 나노소재, 유기-무기 복합 나노구조를 활용한 테라헤르츠 발진기 및 흡수체 설계에 초점을 맞추고 있으며, 초고속 전자 동역학, 자기 공진현상, 비선형 광학적 응답을 이해하는 데 기여하고 있습니다. 연구는 실험적 측정과 수치 시뮬레이션을 융합하여, 응용 가능성이 높은 차세대 테라헤르츠 소자 개발을 목표로 하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
We investigated the ultrafast terahertz response to the photoexcitation for vanadium dioxide single crystals and thin films using the optical-pump terahertz-probe technique at room temperature. The optical excitation induced an ultrafast decrease of the transmittance of the terahertz radiation within 0.7ps. Since we expect only the free carrier response in the terahertz range, the decrease of the transmittance is unambiguously assigned to the appearance of the high electronic conductivity due to
We report the first observation of sub-terahertz bulk-magnetization precession, using terahertz time-domain spectroscopy. The magnetization precession in gallium-substituted epsilon-iron oxide nano-ferromagnets under zero magnetic field is induced by the impulsive magnetic field of the THz wave through the gyromagnetic effect. Just at the resonance frequency, the linear to circular polarized wave conversion is realized. This is understood as the free induction decay signal radiated from a rotati
Quasi-monodisperse dielectric particles organized in a periodic hexagonal network on an aluminum surface are exploited numerically and experimentally as a single-layered near-perfect absorber in the terahertz regime. Of particular interest are titanium dioxide (TiO(2)) microspheres because of their large dielectric permittivity and isotropic shape leading to Mie resonances with insensitive polarization. Absorption higher than 80% at normal incidence covering two distinct ranges of frequencies is
The temperature dependence of the terahertz (THz) radiation from semi-insulating InP surfaces excited by ultrashort laser pulses has been studied in detail between 10 and 300 K. It is found that the electric field of the radiated THz waves show opposite polarity at low and high temperatures for low-density excitation. The temperature dependence is explained by the competing model of the drift and the diffusion currents. Good agreement between the experimental results and the calculations based o
A magnetically and electrically polarization-tunable terahertz emitter that integrates a ferromagnetic heterostructure and large-birefringence liquid crystals is demonstrated. The heterostructure and the liquid crystal cell act as the broadband terahertz source and the phase retarder, respectively. The polarization state is switched between linear and circular by changing the direction of the external magnetic field. The phase retardation for frequencies higher than 1 THz is continuously adjusta
We demonstrate terahertz pulse generation from silver nanoparticle ink, originally developed for printed electronics, under irradiation by femtosecond laser pulses. Using metal nanoparticle ink, metallic nanostructures can be easily made in a large area without lithographic techniques. Terahertz pulses were emitted from the baked ink, having spontaneously formed nanostructures of ∼100 nm. From the results of the baking temperature dependence and the polarization measurement, the terahertz genera
Substantial enhancement of terahertz magnetic near field achieved by the combination of a tapered metallic waveguide and a micro-split-ring resonator is demonstrated. The magnetic near field is probed directly via the magneto-optic sampling with a Tb<sub>3</sub>Ga<sub>5</sub>O<sub>12</sub> crystal. The incident terahertz wave with a half-cycle waveform is generated by using the pulse-front tilting method. The magnetic near field at the resonant frequency is enhanced by more than 30 times through