We present an iterative retrieval algorithm based on data constraint for ultrashort pulse characterization using dispersion scan (d-scan). The proposed algorithm is much faster and leads to a drastic reduction of retrieval times, but, compared to the standard algorithm, it performs less robustly in the retrieval of noisy d-scan traces. The algorithm is tested on several simulated cases and in two different experimental cases in the few-cycle regime
Iterative algorithms for phase retrieval from intensity data are compared to gradient search methods...
We present a compact implementation of the ultrashort pulse measurement technique based on dispersio...
National Natural Science Foundation of China [61205103]The dispersive Fourier transform is suitable ...
We present an iterative retrieval algorithm based on data constraint for ultrashort pulse characteri...
Many ultrashort laser pulse measurement schemes such as frequency-resolved optical gating (FROG), in...
Ultrashort laser pulses play an important role in many applications in science and technology, from ...
[EN] We demonstrate a single-shot ultrafast diagnostic, based on the dispersion-scan (d-scan) techni...
The dispersion scan (d-scan) technique has emerged as a simple-to-implement characterization method ...
We investigate the performance of the recently introduced 'd-scan' technique for the characterizatio...
We propose and demonstrate a phase retrieval method using a novel variant of the dispersion scan (‘d...
The precise characterization of femtosecond laser pulses is as challenging as their generation and a...
Abstract In most applications of ultrashort pulse lasers, temporal compressors are used to achieve a...
Ultrashort laser pulses have become an indispensable tool in physics, chemistry and engineering. The...
We present a new phase characterization technique for ultrashort laser pulses that employs self-phas...
We explore a fundamental problem of super-resolving a signal of interest from a few measurements of ...
Iterative algorithms for phase retrieval from intensity data are compared to gradient search methods...
We present a compact implementation of the ultrashort pulse measurement technique based on dispersio...
National Natural Science Foundation of China [61205103]The dispersive Fourier transform is suitable ...
We present an iterative retrieval algorithm based on data constraint for ultrashort pulse characteri...
Many ultrashort laser pulse measurement schemes such as frequency-resolved optical gating (FROG), in...
Ultrashort laser pulses play an important role in many applications in science and technology, from ...
[EN] We demonstrate a single-shot ultrafast diagnostic, based on the dispersion-scan (d-scan) techni...
The dispersion scan (d-scan) technique has emerged as a simple-to-implement characterization method ...
We investigate the performance of the recently introduced 'd-scan' technique for the characterizatio...
We propose and demonstrate a phase retrieval method using a novel variant of the dispersion scan (‘d...
The precise characterization of femtosecond laser pulses is as challenging as their generation and a...
Abstract In most applications of ultrashort pulse lasers, temporal compressors are used to achieve a...
Ultrashort laser pulses have become an indispensable tool in physics, chemistry and engineering. The...
We present a new phase characterization technique for ultrashort laser pulses that employs self-phas...
We explore a fundamental problem of super-resolving a signal of interest from a few measurements of ...
Iterative algorithms for phase retrieval from intensity data are compared to gradient search methods...
We present a compact implementation of the ultrashort pulse measurement technique based on dispersio...
National Natural Science Foundation of China [61205103]The dispersive Fourier transform is suitable ...