Magnetic fields can increase the intensity of terahertz (THz) waves due to changing the dipole moment direction using the Lorentz force. This study reports the increase in the THz-wave intensity generated by differential frequency mixing using commercial permanent magnets under exciton-excitation. While a weak magnetic field applied to a multiple quantum well increases the THz-wave intensity due to excitons, a strong field causes its decrease. According to the calculations, the increase is caused by the electron-hole separation due to the Lorentz force. Furthermore, the calculations suggest the importance of carrier acceleration to enhance the intensity. Importantly, the increase in the THz-wave intensity due to differential frequency mixin...
It is found that single-cycle THz electromagnetic fields efficiently excite a GHz spin resonance mod...
High Q-factor resonance holds great promise for bio-chemical sensing and enhanced light-matter inter...
Using spin currents generated by fs laser pulses, we demonstrate excitation of GHz ferromagnetic res...
Magnetic fields can increase the intensity of terahertz (THz) waves due to changing the dipole momen...
Continuous terahertz wave sources with narrow bandwidth and wide frequency tunability enable high-re...
International audienceWe probed, in the time domain, the THz electromagnetic radiation originating f...
The stability of excitons with large oscillator strengths at room temperature has been of great sign...
[[abstract]]Optically excited THz-radiation from ten molecular-beam epitaxy (MBE)-grown strained mul...
We systematically study the pump-wavelength dependence of terahertz pulse generation in thin-film sp...
Intense terahertz-wave emission in the higher frequency region can result in various applications su...
Interactions between excitons with different energies are significant in device application, particu...
We present terahertz (THz) emission of optically pumped 5- and I2.5-nm GaAs/AIGaAs multiple quantum ...
We discuss the origins of the magnetic-field-induced enhancement of terahertz (THz) emission from bu...
We probed, in the time domain, the THz electromagnetic radiation originating from spins in CdMnTe di...
We consider the influence of additional carrier confinement, achieved by application of strong perpe...
It is found that single-cycle THz electromagnetic fields efficiently excite a GHz spin resonance mod...
High Q-factor resonance holds great promise for bio-chemical sensing and enhanced light-matter inter...
Using spin currents generated by fs laser pulses, we demonstrate excitation of GHz ferromagnetic res...
Magnetic fields can increase the intensity of terahertz (THz) waves due to changing the dipole momen...
Continuous terahertz wave sources with narrow bandwidth and wide frequency tunability enable high-re...
International audienceWe probed, in the time domain, the THz electromagnetic radiation originating f...
The stability of excitons with large oscillator strengths at room temperature has been of great sign...
[[abstract]]Optically excited THz-radiation from ten molecular-beam epitaxy (MBE)-grown strained mul...
We systematically study the pump-wavelength dependence of terahertz pulse generation in thin-film sp...
Intense terahertz-wave emission in the higher frequency region can result in various applications su...
Interactions between excitons with different energies are significant in device application, particu...
We present terahertz (THz) emission of optically pumped 5- and I2.5-nm GaAs/AIGaAs multiple quantum ...
We discuss the origins of the magnetic-field-induced enhancement of terahertz (THz) emission from bu...
We probed, in the time domain, the THz electromagnetic radiation originating from spins in CdMnTe di...
We consider the influence of additional carrier confinement, achieved by application of strong perpe...
It is found that single-cycle THz electromagnetic fields efficiently excite a GHz spin resonance mod...
High Q-factor resonance holds great promise for bio-chemical sensing and enhanced light-matter inter...
Using spin currents generated by fs laser pulses, we demonstrate excitation of GHz ferromagnetic res...