The technique for producing and measuring few tens of femtosecond electron beams, and the consequent generation of few tens femtoseconds single spike FEL radiation pulses at SPARC_LAB is presented. The undulator has been used in the double role of radiation source and diagnostic tool for the characterization of the electron beam. The connection between the electron bunch length and the radiation bandwidth is analyzed
We propose a technique for measuring the length of an electron bunch from a linear accelerator witho...
Abstract A combination of electro-optic detection of the Coulomb field of an electron bunch and sing...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
The technique for producing and measuring few tens of femtosecond electron beams, and the consequent...
An analysis of the single-spike FEL radiation in the visible range starting from noise is presented,...
In this paper, we study the production of low charge-in the 1 pC range-high brightness, ultra-short ...
Single-pass free electron lasers require high peak currents from ultra-short electron bunches to rea...
In this paper, we study the production of low charge-in the 1 pC range-high brightness, ultra-short ...
In the quest for ultra-compact sources, a test experiment is under preparation, to couple an electro...
The Darmstadt IR FEL is designed to generate wavelengths between 3 and 10 mm and driven by the super...
We describe in this paper a possible experiment with the existing SPARC photoinjector to test the ge...
The measurement of ultra-short electron bunches on the femtosecond time scale constitutes a very cha...
This work studies the production and measurement of longitudinally coherent, ultrashort pulses of li...
Electro-optic detection of the Coulomb field of electron bunches is a promising technique for single...
Ultrashort electron bunches with rms length of {approx} 1 femtosecond (fs) can be used to generate u...
We propose a technique for measuring the length of an electron bunch from a linear accelerator witho...
Abstract A combination of electro-optic detection of the Coulomb field of an electron bunch and sing...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
The technique for producing and measuring few tens of femtosecond electron beams, and the consequent...
An analysis of the single-spike FEL radiation in the visible range starting from noise is presented,...
In this paper, we study the production of low charge-in the 1 pC range-high brightness, ultra-short ...
Single-pass free electron lasers require high peak currents from ultra-short electron bunches to rea...
In this paper, we study the production of low charge-in the 1 pC range-high brightness, ultra-short ...
In the quest for ultra-compact sources, a test experiment is under preparation, to couple an electro...
The Darmstadt IR FEL is designed to generate wavelengths between 3 and 10 mm and driven by the super...
We describe in this paper a possible experiment with the existing SPARC photoinjector to test the ge...
The measurement of ultra-short electron bunches on the femtosecond time scale constitutes a very cha...
This work studies the production and measurement of longitudinally coherent, ultrashort pulses of li...
Electro-optic detection of the Coulomb field of electron bunches is a promising technique for single...
Ultrashort electron bunches with rms length of {approx} 1 femtosecond (fs) can be used to generate u...
We propose a technique for measuring the length of an electron bunch from a linear accelerator witho...
Abstract A combination of electro-optic detection of the Coulomb field of an electron bunch and sing...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...