The rapid advances in the generation of ultra-short optical pulses in recent decades have often outstripped the ability of metrologists to accurately measure the pulses' temporal profiles. With each reduction in pulse duration, existing measurement techniques must be re-evaluated and often times partially or completely replaced with newer schemes providing the required temporal sensitivity. Frequency or time-domain metrology performed after a short pulse interaction with a physical system can provide volumes of information about the governing physics of the system. Two new techniques for the temporal characterization of few-cycle and sub-cycle radiation are presented, along with experimental results and analysis. A dispersion-free autocorr...
The ways to produce and measure atto- and femtosecond soft X-ray pulses are reported. The laser phas...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
It is intuitive that with new tools to analyze nature, new domains can be explored. Ultrafast electr...
The rapid advances in the generation of ultra-short optical pulses in recent decades have often outs...
Communication technologies are continuosly evolving since were invented the telegraph. Nowadays, one...
Due to the unique combination of properties of high intensity and few optical cycle pulse duration, ...
Due to the unique combination of properties of high intensity and few optical cycle pulse duration, ...
Real-time studies of ultra-fast evolving quantum systems require even faster probe mechanisms. For e...
Real-time studies of ultra-fast evolving quantum systems require even faster probe mechanisms. For e...
Real-time studies of ultra-fast evolving quantum systems require even faster probe mechanisms. For e...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.Ultrafast optical pulses are use...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
The ways to produce and measure atto- and femtosecond soft X-ray pulses are reported. The laser phas...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
It is intuitive that with new tools to analyze nature, new domains can be explored. Ultrafast electr...
The rapid advances in the generation of ultra-short optical pulses in recent decades have often outs...
Communication technologies are continuosly evolving since were invented the telegraph. Nowadays, one...
Due to the unique combination of properties of high intensity and few optical cycle pulse duration, ...
Due to the unique combination of properties of high intensity and few optical cycle pulse duration, ...
Real-time studies of ultra-fast evolving quantum systems require even faster probe mechanisms. For e...
Real-time studies of ultra-fast evolving quantum systems require even faster probe mechanisms. For e...
Real-time studies of ultra-fast evolving quantum systems require even faster probe mechanisms. For e...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.Ultrafast optical pulses are use...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
The ways to produce and measure atto- and femtosecond soft X-ray pulses are reported. The laser phas...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
It is intuitive that with new tools to analyze nature, new domains can be explored. Ultrafast electr...