A new method is proposed and analyzed for measuring the timing jitter of the transmitted pulse relative to the reference pulse using two type II phase-matched nonlinear crystals for second harmonic generation (SHG). The polarizations of the two pulses are exchanged in two crystals and the difference between two detected second harmonic signals can reflect the transmitted jitter. This new method provides a high sensitivity and timing resolution compared with the conventional RF (radio frequency) method. Since the overlapping levels in the two crystals are the same, the final output is zero when there is no time delay between the two pulses. Thus no offset is necessary to be subtracted from the final output and no time delay adjustment is req...
We propose and demonstrate experimentally a method for the sensitive measurement of the relative tim...
A theoretical model for interferometric autocorrelation with long nonlinear crystal (input depleted)...
Communication technologies are continuosly evolving since were invented the telegraph. Nowadays, one...
We present a novel single-shot cross-correlation technique based on the analysis of the transversall...
We report on the distortion of second harmonic pulses generated in non-phase-matched conditions by h...
We present a novel single-shot cross-correlation technique based on the analysis of the transversall...
A frequency-domain description of the second-harmonic generation by using laser pulses is presented....
The second harmonic beam generated in a noncollinear arrangement allows the observation of the autoc...
The second harmonic beam generated in a noncollinear arrangement allows the observation of the autoc...
The second harmonic beam generated in a noncollinear arrangement allows the observation of the autoc...
Mathematical computation for a scheme of balanced optical cross correlation and analysis for the eff...
We present a novel single-shot cross-correlation technique based on the analysis of the transversall...
The second harmonic beam generated in a noncollinear arrangement allows the observation of the autoc...
The second order transverse autocorrelation technique, using a nonlinear crystal with a random-size ...
Second harmonic generation (SHG) in nonlinear optical crystal is well-established technique for the ...
We propose and demonstrate experimentally a method for the sensitive measurement of the relative tim...
A theoretical model for interferometric autocorrelation with long nonlinear crystal (input depleted)...
Communication technologies are continuosly evolving since were invented the telegraph. Nowadays, one...
We present a novel single-shot cross-correlation technique based on the analysis of the transversall...
We report on the distortion of second harmonic pulses generated in non-phase-matched conditions by h...
We present a novel single-shot cross-correlation technique based on the analysis of the transversall...
A frequency-domain description of the second-harmonic generation by using laser pulses is presented....
The second harmonic beam generated in a noncollinear arrangement allows the observation of the autoc...
The second harmonic beam generated in a noncollinear arrangement allows the observation of the autoc...
The second harmonic beam generated in a noncollinear arrangement allows the observation of the autoc...
Mathematical computation for a scheme of balanced optical cross correlation and analysis for the eff...
We present a novel single-shot cross-correlation technique based on the analysis of the transversall...
The second harmonic beam generated in a noncollinear arrangement allows the observation of the autoc...
The second order transverse autocorrelation technique, using a nonlinear crystal with a random-size ...
Second harmonic generation (SHG) in nonlinear optical crystal is well-established technique for the ...
We propose and demonstrate experimentally a method for the sensitive measurement of the relative tim...
A theoretical model for interferometric autocorrelation with long nonlinear crystal (input depleted)...
Communication technologies are continuosly evolving since were invented the telegraph. Nowadays, one...