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1.
Opt Express ; 22(24): 30004-12, 2014 Dec 01.
Artículo en Inglés | MEDLINE | ID: mdl-25606930

RESUMEN

The accurate measurement of the arrival time of a hard X-ray free electron laser (FEL) pulse with respect to a laser is of utmost importance for pump-probe experiments proposed or carried out at FEL facilities around the world. This manuscript presents the latest device to meet this challenge, a THz streak camera using Xe gas clusters, capable of pulse arrival time measurements with an estimated accuracy of several femtoseconds. An experiment performed at SACLA demonstrates the performance of the device at photon energies between 5 and 10 keV with variable photon beam parameters.


Asunto(s)
Electrones , Rayos Láser , Luz , Fotograbar/instrumentación , Radiación Terahertz , Xenón/química , Fotones , Factores de Tiempo , Rayos X
2.
Phys Rev Lett ; 100(6): 064801, 2008 Feb 15.
Artículo en Inglés | MEDLINE | ID: mdl-18352480

RESUMEN

Illumination of a ZrC needle with short laser pulses (16 ps, 266 nm) while high voltage pulses (-60 kV, 2 ns, 30 Hz) are applied, produces photo-field emitted electron bunches. The electric field is high and varies rapidly over the needle surface so that quantum efficiency (QE) near the apex can be much higher than for a flat photocathode due to the Schottky effect. Up to 150 pC (2.9 A peak current) have been extracted by photo-field emission from a ZrC needle. The effective emitting area has an estimated radius below 50 microm leading to a theoretical intrinsic emittance below 0.05 mm mrad.

3.
Phys Rev Lett ; 99(17): 174801, 2007 Oct 26.
Artículo en Inglés | MEDLINE | ID: mdl-17995338

RESUMEN

We report on the temporal and spatial stability of the first tunable femtosecond undulator hard-x-ray source for ultrafast diffraction and absorption experiments. The 2.5-1 Angstrom output radiation is driven by an initial 50 fs laser pulse employing the laser-electron slicing technique. By using x-ray diffraction to probe laser-induced coherent optical phonons in bulk bismuth, we estimate an x-ray pulse duration of 140+/-30 fs FWHM with timing drifts below 30 fs rms measured over 5 days. Optical control of coherent lattice motion is demonstrated.

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