The visible-infrared self-amplified spontaneous emission amplifier (VISA) free electron laser (FEL) is an experimental device designed to show self-amplified spontaneous emission (SASE) to saturation in the near infrared to visible light energy range. It generates a resonant wavelength output from 800–600 nm, so that silicon detectors may be used to characterize the optical properties of the FEL radiation. VISA is designed to show how SASE FEL theory corresponds with experiment in this wavelength range, using an electron beam with emittance close to that planned for the future Linear Coherent Light Source at SLAC. VISA comprises a 4 m pure permanent magnet undulator with four 99 cm segments, each of 55 periods, 18 mm long. The undulator has...
A high peak current, low emittance, short pulse electron beam can produce intense, laser-like radiat...
First lasing of a single-pass free electron laser below 100 nm wavelength was recently observed at t...
The VISA (Visible to Infrared SASE Amplifier) SASE free electron laser has been successfully operate...
The Visible-Infrared SASE Amplifier (VISA) FEL is an experimental device designed to show Self Ampli...
The Visible-Infrared SASE Amplifier (VISA) FEL is an experimental device designed to show Self Ampli...
In this work, the main results of the VISA experiment (Visible to Infrared SASE Amplifier) are prese...
The VISA (Visible to Infrared SASE Amplifier) project is designed to be a SASE-FEL driven to saturat...
The mid-infrared range is an important spectrum range where materials exhibit a characteristic respo...
The development of undulator technologies capable of generating sub-cm undulator periods is assuming...
After a brief introduction to the basic concept of Free Electron Lasers operating in the Self-Amplif...
A self-amplified spontaneously emitting (SASE) free-electron laser (FEL) for the visible-to-ultravio...
After a brief introduction to the basic concept of Free Electron Lasers operating in the Self-Amplif...
The first observation of Self-Amplified Spontaneous Emission (SASE) in a free-electron laser (FEL) i...
As part of the R&D program towards a fourth generation light source, a Self-Amplified Spontaneou...
We present an experimental and theoretical evaluation of a new method of enhancing the efficiency an...
A high peak current, low emittance, short pulse electron beam can produce intense, laser-like radiat...
First lasing of a single-pass free electron laser below 100 nm wavelength was recently observed at t...
The VISA (Visible to Infrared SASE Amplifier) SASE free electron laser has been successfully operate...
The Visible-Infrared SASE Amplifier (VISA) FEL is an experimental device designed to show Self Ampli...
The Visible-Infrared SASE Amplifier (VISA) FEL is an experimental device designed to show Self Ampli...
In this work, the main results of the VISA experiment (Visible to Infrared SASE Amplifier) are prese...
The VISA (Visible to Infrared SASE Amplifier) project is designed to be a SASE-FEL driven to saturat...
The mid-infrared range is an important spectrum range where materials exhibit a characteristic respo...
The development of undulator technologies capable of generating sub-cm undulator periods is assuming...
After a brief introduction to the basic concept of Free Electron Lasers operating in the Self-Amplif...
A self-amplified spontaneously emitting (SASE) free-electron laser (FEL) for the visible-to-ultravio...
After a brief introduction to the basic concept of Free Electron Lasers operating in the Self-Amplif...
The first observation of Self-Amplified Spontaneous Emission (SASE) in a free-electron laser (FEL) i...
As part of the R&D program towards a fourth generation light source, a Self-Amplified Spontaneou...
We present an experimental and theoretical evaluation of a new method of enhancing the efficiency an...
A high peak current, low emittance, short pulse electron beam can produce intense, laser-like radiat...
First lasing of a single-pass free electron laser below 100 nm wavelength was recently observed at t...
The VISA (Visible to Infrared SASE Amplifier) SASE free electron laser has been successfully operate...