Taiha Joo
포항공과대학교 물리학과 · 화학
Taiha Joo 교수의 연구실은 초고속 분광학을 핵심으로 하여 분자 내부의 전자 및 진동 동역학, 용매-용질 상호작용, 그리고 생체 분자에서의 에너지 이동 메커니즘을 연구합니다. 특히 펌프-프로브, 광학 격자, 광자 에코 등 제3차 및 제5차 비선형 분광 기법을 활용해 피코초에서 펌스초 이하의 시간 스케일에서의 동역학을 정밀하게 분석합니다. 또한 반응 기반 형광 프로브 개발을 통해 생체 분석 및 이미징 응용도 함께 진행하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Several closely related third-order nonlinear time-resolved spectroscopic techniques, pump/probe transient absorption, transient grating, and three pulse stimulated photon echo peak shift measurements, are investigated theoretically and experimentally. It is shown in detail, through the consideration of response functions and numerical simulations including both finite pulse durations and detuning from exact resonance, how the solvation dynamics are manifested in these third-order nonlinear time
The underlying dynamics of the B800 absorption band in isolated LH2 of Rb. sphaeroides at room temperature is studied by transient absorption, transient grating, and photon echoes using 30 fs pulses. The energy transfer time from B800 to B850 is determined to be 800 fs, similar to the value reported previously. The three pulse stimulated photon echo identifies several important contributions to the B800 absorption line shape and thereby the dynamics of the system involved: several low frequency
An ultra-fast chemical reaction can act as an impulsive excitation of the vibrations. Excited state intramolecular proton transfer in 10-hydroxybenzo[h]quinoline proceeds in 13 fs. As a result, product vibrational modes with their periods longer than (13 x 2) fs are coherently excited in the product potential surface, which can be observed most unambiguously by the oscillations in the time-resolved fluorescence signal of the product keto isomer.
The electronic dephasing of two oxazine dyes dissolved in ethylene glycol at room temperature is investigated by femtosecond degenerate four wave mixing (DFWM) experiments. Both two-pulse and three-pulse DFWM with simultaneous detection of the signals at two distinct phase-matching directions permits detailed investigation of dephasing dynamics in a room temperature liquid. At least two stochastic processes are responsible for the observed electronic dephasing: one is treated empirically as an e
Reaction-based fluorescent probes for monoamine oxidases A and B are developed based on a new two-photon absorbing compound and its precursor. The probes show turn-on fluorescence response to the enzymes owing to the two-photon absorbing compound produced by the enzymatic activity, as monitored by one- as well as two-photon microscopy for the first time.
We report a new spectroscopic measurement based on fifth order nonlinear response from a molecule in a room temperature liquid. In conjunction with conventional three pulse stimulated photon echo, detailed information on solvent–solute dynamics for a wide range of time scales has been obtained. Both the ultrafast inertial components and much slower dynamics of the solvent are found to make important contributions to the solvent relaxation. The potential of the fifth order measurements is discuss
Femtosecond time-resolved coherent Stokes Raman spectroscopy (CSRS) signals of benzene-h6, benzene-d6, and their 1 : 1 binary mixture are investigated at room temperature with two different polarization geometries. The reorientational correlation time of benzene as well as the vibrational dephasing time of the v1 ring-breathing mode have been measured precisely. Bohr frequency difference beats have been resolved between the v1 modes of 12C6H6 and 12C6H6 and 12C513CH6 protonated benzenes and the