Ultrafast dephasing of the plasmonlike longitudinal optical phonon-plasmon coupled (LOPC) mode in highly doped n-GaAs has been investigated by using a femtosecond optical pump-probe technique with 40 THz bandwidth as a function of photodoping levels. The direct measurement of plasmon damping with the help of a wavelet analysis enables us to extract carrier (electron) mobility, which decreases with increasing the photodoping levels. It is found that the mobility is suppressed at high photodoping levels due to electron-hole scattering, while it is enhanced near a critical density, being plausibly attributed to the strong coherent coupling of the LO phonon with the plasmon
Optical pump terahertz probe spectroscopy (OPTP) is a versatile non-contact technique that measures ...
Accurate measurements of the electrical properties of semiconductor materials are important for devi...
We have used optical-pump-terahertz-probe spectroscopy (OPTPS) to study a range of novel of semicond...
Using the nonperturbative many-body time-dependent approach, we investigate the nonequilibrium dynam...
We demonstrate optical control of the LO phonon-plasmon coupled (LOPC) modes in GaAs by using a femt...
In the investigation of the nonequilibrium ultrafast dynamics of the coherent phonon-plasmon coupled...
Detailed understanding of basic scattering mechanisms of high density and highly energetic carriers ...
[[abstract]]In this paper, we demonstrate that the momentum relaxation time of photoexcited carriers...
We present a general treatment of carrier scattering by coupled phonon-plasmon collective modes in p...
Highly doped polar semiconductors are essential components of today’s semiconductor industry. Most s...
The screening of longitudinal optical phonons by plasmons is investigated by time-resolved visible p...
Carrier relaxation and LO-phonon dynamics are investigated in GaAs crystals illuminated by picosecon...
In the investigation of the nonequilibrium ultrafast dynamics of the coherent phonon-plasmon coupled...
As a light absorber in photovoltaic applications, hybrid organic-inorganic halide perovskites should...
This dissertation describes the development of a high-repetition-rate broadly-tunable ultrafast lase...
Optical pump terahertz probe spectroscopy (OPTP) is a versatile non-contact technique that measures ...
Accurate measurements of the electrical properties of semiconductor materials are important for devi...
We have used optical-pump-terahertz-probe spectroscopy (OPTPS) to study a range of novel of semicond...
Using the nonperturbative many-body time-dependent approach, we investigate the nonequilibrium dynam...
We demonstrate optical control of the LO phonon-plasmon coupled (LOPC) modes in GaAs by using a femt...
In the investigation of the nonequilibrium ultrafast dynamics of the coherent phonon-plasmon coupled...
Detailed understanding of basic scattering mechanisms of high density and highly energetic carriers ...
[[abstract]]In this paper, we demonstrate that the momentum relaxation time of photoexcited carriers...
We present a general treatment of carrier scattering by coupled phonon-plasmon collective modes in p...
Highly doped polar semiconductors are essential components of today’s semiconductor industry. Most s...
The screening of longitudinal optical phonons by plasmons is investigated by time-resolved visible p...
Carrier relaxation and LO-phonon dynamics are investigated in GaAs crystals illuminated by picosecon...
In the investigation of the nonequilibrium ultrafast dynamics of the coherent phonon-plasmon coupled...
As a light absorber in photovoltaic applications, hybrid organic-inorganic halide perovskites should...
This dissertation describes the development of a high-repetition-rate broadly-tunable ultrafast lase...
Optical pump terahertz probe spectroscopy (OPTP) is a versatile non-contact technique that measures ...
Accurate measurements of the electrical properties of semiconductor materials are important for devi...
We have used optical-pump-terahertz-probe spectroscopy (OPTPS) to study a range of novel of semicond...