This paper presents a simple, low-cost, and novel technique for measuring the temporal pulse shape of a nanosecond laser pulse accurately and consistently. The measurement configuration consists of a focusing lens, a tapered rod, and a digital noise filter. Using this setup, the pulsewidth of a nitrogen laser has been determined experimentally. Compared with an unaided measurement configuration, the new setup reduces the maximum deviation from 24.5% to 6.2% and the standard deviation from 7.6% to 1.4%, respectively.</p
A simple and reliable technique to temporally shorten a multinanosecond Nd:glass laser pulse to less...
Ultrashort laser pulses are nowadays widely used in both the basic and applied reseach as well as in...
By combining machine learning methods and the dispersive Fourier transform we demonstrate, to the be...
This paper presents a simple, low-cost, and novel technique for measuring the temporal pulse shape o...
AbstractWe apply the Fabry–Pérot (FP) scanning interferometer, which is normally used for continuous...
Communication technologies are continuosly evolving since were invented the telegraph. Nowadays, one...
We apply the Fabry–Pérot (FP) scanning interferometer, which is normally used for continuous wave (C...
We review the problem of measuring an ultrashort laser pulse and then describe several experimentall...
A technique for the characterization of picosecond pulse widths is presented, based a non-linear opt...
Presented on Wednesday, September 7, 2011, 2011 from 3:00 pm to 4:00 pm in Howey building lecture Ro...
A technique for the characterization of picosecond pulse widths is presented, based a non-linear opt...
Abstract. Fluctuating pulse durations considerably influence the time resolution of probing experime...
A method for measuring picosecond pulse width by using only fiber components and optical power meter...
A stable, intense nanosecond light pulse was obtained by nitrogen discharge lamp operated by free ru...
We report the first demonstration and give experimental details of a technique for measuring the pul...
A simple and reliable technique to temporally shorten a multinanosecond Nd:glass laser pulse to less...
Ultrashort laser pulses are nowadays widely used in both the basic and applied reseach as well as in...
By combining machine learning methods and the dispersive Fourier transform we demonstrate, to the be...
This paper presents a simple, low-cost, and novel technique for measuring the temporal pulse shape o...
AbstractWe apply the Fabry–Pérot (FP) scanning interferometer, which is normally used for continuous...
Communication technologies are continuosly evolving since were invented the telegraph. Nowadays, one...
We apply the Fabry–Pérot (FP) scanning interferometer, which is normally used for continuous wave (C...
We review the problem of measuring an ultrashort laser pulse and then describe several experimentall...
A technique for the characterization of picosecond pulse widths is presented, based a non-linear opt...
Presented on Wednesday, September 7, 2011, 2011 from 3:00 pm to 4:00 pm in Howey building lecture Ro...
A technique for the characterization of picosecond pulse widths is presented, based a non-linear opt...
Abstract. Fluctuating pulse durations considerably influence the time resolution of probing experime...
A method for measuring picosecond pulse width by using only fiber components and optical power meter...
A stable, intense nanosecond light pulse was obtained by nitrogen discharge lamp operated by free ru...
We report the first demonstration and give experimental details of a technique for measuring the pul...
A simple and reliable technique to temporally shorten a multinanosecond Nd:glass laser pulse to less...
Ultrashort laser pulses are nowadays widely used in both the basic and applied reseach as well as in...
By combining machine learning methods and the dispersive Fourier transform we demonstrate, to the be...