Terahertz electromagnetic pulses are frequently generated by optical rectification of femtosecond laser pulses. In many cases, the efficiency of this process is known to saturate with increasing intensity of the generation beam because of two-photon absorption. Here, we demonstrate two routes to reduce this effect in ZnTe(110) crystals and enhance efficiency, namely, by (i) recycling the generation pulses and by (ii) splitting each generation pulse into two pulses before pumping the crystal. In both methods, the second pulse arrives ∼1 ns after the first one, sufficiently long for optically generated carriers to relax. Enhancement is achieved by coherently superimposing the two resulting terahertz fields
The evolution of THz spectrum generated in a ZnTe crystal versus the intensity of ultra-short laser ...
This thesis deals with the theoretical and experimental study of the generation and shaping of terah...
International audienceThe evolution of THz spectrum generated in a ZnTe crystal versus the intensity...
We study the evolution of the energy and the spectrum of a terahertz wave generated by optical recti...
We study the evolution of the energy and the spectrum of a terahertz wave generated by optical recti...
We study the evolution of the energy and the spectrum of a terahertz wave generated by optical recti...
We report on optimal control of the output energy of terahertz (THz) waves generated by optical rect...
We report on optimal control of the output energy of terahertz (THz) waves generated by optical rect...
We present a study of the competition between tera-hertz (THz) generation by optical rectification i...
We present a study of the terahertz (THz) generation by optical rectification in a 2 mm thick ZnTe ...
A new route to efficient generation of THz pulses with high-energy was demonstrated using semiconduc...
We present a study of the competition between THz generation by optical rectification in ZnTe crysta...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
International audienceWe present a study of the competition between tera-hertz (THz) generation by o...
The evolution of THz spectrum generated in a ZnTe crystal versus the intensity of ultra-short laser ...
The evolution of THz spectrum generated in a ZnTe crystal versus the intensity of ultra-short laser ...
This thesis deals with the theoretical and experimental study of the generation and shaping of terah...
International audienceThe evolution of THz spectrum generated in a ZnTe crystal versus the intensity...
We study the evolution of the energy and the spectrum of a terahertz wave generated by optical recti...
We study the evolution of the energy and the spectrum of a terahertz wave generated by optical recti...
We study the evolution of the energy and the spectrum of a terahertz wave generated by optical recti...
We report on optimal control of the output energy of terahertz (THz) waves generated by optical rect...
We report on optimal control of the output energy of terahertz (THz) waves generated by optical rect...
We present a study of the competition between tera-hertz (THz) generation by optical rectification i...
We present a study of the terahertz (THz) generation by optical rectification in a 2 mm thick ZnTe ...
A new route to efficient generation of THz pulses with high-energy was demonstrated using semiconduc...
We present a study of the competition between THz generation by optical rectification in ZnTe crysta...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
International audienceWe present a study of the competition between tera-hertz (THz) generation by o...
The evolution of THz spectrum generated in a ZnTe crystal versus the intensity of ultra-short laser ...
The evolution of THz spectrum generated in a ZnTe crystal versus the intensity of ultra-short laser ...
This thesis deals with the theoretical and experimental study of the generation and shaping of terah...
International audienceThe evolution of THz spectrum generated in a ZnTe crystal versus the intensity...