A method to achieve high-brightness self-amplified spontaneous emission (HB-SASE) in the free-electron laser (FEL) is described. The method uses repeated nonequal electron beam delays to delocalize the collective FEL interaction and break the radiation coherence length dependence on the FEL cooperation length. The method requires no external seeding or photon optics and so is applicable at any wavelength or repetition rate. It is demonstrated, using linear theory and numerical simulations, that the radiation coherence length can be increased by approximately 2 orders of magnitude over SASE with a corresponding increase in spectral brightness. Examples are shown of HB-SASE generating transform-limited FEL pulses in the soft x-ray and near tr...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
We propose a simple method to significantly enhance the temporal coherence and spectral brightness o...
Optical lasers cannot produce x-rays of photons and high-gain free-electron lasers (FELs) are being ...
A method to achieve high-brightness self-amplified spontaneous emission (HB-SASE) in the free-electr...
A method to achieve high-brightness self-amplified spontaneous emission (HB-SASE) in the free-electr...
AbstractA method to achieve High-Brightness Self-Amplified Spontaneous Emission (HB-SASE) in the Fre...
AbstractA method to achieve High-Brightness Self-Amplified Spontaneous Emission (HB-SASE) in the Fre...
We propose and analyze a novel regenerative amplifier free electron laser (FEL) to produce fully coh...
We propose and analyze a novel regenerative amplifier free electron laser (FEL) to produce fully coh...
Self-amplified spontaneous emission in a free-electron laser has been proposed for the generation of...
Self-ampliÞed spontaneous emission in a free-electron laser has been proposed for the generation of ...
We report the first experimental implementation of a method based on simultaneous use of an energy c...
Present-day scientific applications using x-rays from synchrotron radiation sources show very high p...
We propose a new scheme for two-color operation of an x-ray self-amplified spontaneous emission free...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
We propose a simple method to significantly enhance the temporal coherence and spectral brightness o...
Optical lasers cannot produce x-rays of photons and high-gain free-electron lasers (FELs) are being ...
A method to achieve high-brightness self-amplified spontaneous emission (HB-SASE) in the free-electr...
A method to achieve high-brightness self-amplified spontaneous emission (HB-SASE) in the free-electr...
AbstractA method to achieve High-Brightness Self-Amplified Spontaneous Emission (HB-SASE) in the Fre...
AbstractA method to achieve High-Brightness Self-Amplified Spontaneous Emission (HB-SASE) in the Fre...
We propose and analyze a novel regenerative amplifier free electron laser (FEL) to produce fully coh...
We propose and analyze a novel regenerative amplifier free electron laser (FEL) to produce fully coh...
Self-amplified spontaneous emission in a free-electron laser has been proposed for the generation of...
Self-ampliÞed spontaneous emission in a free-electron laser has been proposed for the generation of ...
We report the first experimental implementation of a method based on simultaneous use of an energy c...
Present-day scientific applications using x-rays from synchrotron radiation sources show very high p...
We propose a new scheme for two-color operation of an x-ray self-amplified spontaneous emission free...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
Free-electron lasers (FELs) are among the world's most intense artificial artificial sources of cohe...
We propose a simple method to significantly enhance the temporal coherence and spectral brightness o...
Optical lasers cannot produce x-rays of photons and high-gain free-electron lasers (FELs) are being ...