We report about a novel technique to generate microwave radiation by the irradiation of a nonlinear optical crystal with uniformly spaced, ultrashort optical pulses delivered by a mode-locked laser. We study systematically the laser polarization and intensity dependence of the microwave signal to conclusively show that it is a nonlinear phenomenon and that it originates from optical rectification. The measurements have been conducted using KTP, LBO and ZnSe crystals. The observed pulsed microwave signals are harmonically related to the laser pulses repetition rate, a feature that can be exploited to develop an innovative ultrafast laser detector
The objective of this dissertation is to evaluate and develop novel sources for tunable narrowband I...
Ultra-fast laser pulses have made possible the study of extreme nonlinear processes. Many of these e...
A means of supercontinuum (SC) generation is proposed and demonstrated, using femtosecond mode-locke...
We report about a novel technique to generate microwave radiation by the irradiation of a nonlinear ...
We report measurements of microwave (RF) generation in the centimeter band accomplished by irradiati...
We discuss a scheme for the parametric amplification of the quantum fluctuations of the electromagne...
Pulsed microwave radiation in a tuning range from 10 to 30 GHz has been generated through the parame...
Abstract—We propose a new approach for generating coherent microwaves in a nonlinear photonic crysta...
THz-waves extend from the far InfraRed (15 μm – 20 THz) to radio waves (3000 μm – 0.1 THz). Current ...
Transform-limited ultrashort green and infrared light pulses have been generated from a Nd:YAG laser...
Producción CientíficaThe photograph shows a laser based only on nonlinear crystals. This kind of cry...
This dissertation is intended for parametric light oscillators synchronously pumped by femtosecond p...
A femtosecond light pulse at 480 nm in wavelength was generated during filamentation of an intense 8...
A coherent optical THz (1.5 THz, 200 µm) source was developed based on pulsed, near IR, fiber lasers...
To control second harmonic generation (SHG) in silica-based glasses is crucial for fabricating photo...
The objective of this dissertation is to evaluate and develop novel sources for tunable narrowband I...
Ultra-fast laser pulses have made possible the study of extreme nonlinear processes. Many of these e...
A means of supercontinuum (SC) generation is proposed and demonstrated, using femtosecond mode-locke...
We report about a novel technique to generate microwave radiation by the irradiation of a nonlinear ...
We report measurements of microwave (RF) generation in the centimeter band accomplished by irradiati...
We discuss a scheme for the parametric amplification of the quantum fluctuations of the electromagne...
Pulsed microwave radiation in a tuning range from 10 to 30 GHz has been generated through the parame...
Abstract—We propose a new approach for generating coherent microwaves in a nonlinear photonic crysta...
THz-waves extend from the far InfraRed (15 μm – 20 THz) to radio waves (3000 μm – 0.1 THz). Current ...
Transform-limited ultrashort green and infrared light pulses have been generated from a Nd:YAG laser...
Producción CientíficaThe photograph shows a laser based only on nonlinear crystals. This kind of cry...
This dissertation is intended for parametric light oscillators synchronously pumped by femtosecond p...
A femtosecond light pulse at 480 nm in wavelength was generated during filamentation of an intense 8...
A coherent optical THz (1.5 THz, 200 µm) source was developed based on pulsed, near IR, fiber lasers...
To control second harmonic generation (SHG) in silica-based glasses is crucial for fabricating photo...
The objective of this dissertation is to evaluate and develop novel sources for tunable narrowband I...
Ultra-fast laser pulses have made possible the study of extreme nonlinear processes. Many of these e...
A means of supercontinuum (SC) generation is proposed and demonstrated, using femtosecond mode-locke...