The concept of massively parallel coherent fiber lasers holds great promise to generate enormous laser peak power in order to produce highly energetic particle beams. Such technology is expected to provide a route to practical particle colliders or to proton generation for medical applications. Such concept is based on the phasing of thousands of fiber amplifiers each emitting mJ level pulses, in which optical fibers are key components. In this paper, we present important technological building blocks based on optical fibers, which could pave the way for efficient, compact and cost-effective components to address the technological challenges ahead
Four years after the first demonstration of Light Amplification by Stimulated Emission of Radiation ...
We are developing an all fiber laser system optimized for providing input pulses for short pulse (1-...
Pour un grand nombre d'applications, les sources laser impulsionnelles femtoseconde (fs) doivent fou...
Fiber lasers have caught the imagination for applications requiring beam combination up to a 100kW o...
Fiber laser technology has been demonstrated as a versatile and reliable approach to laser source ma...
Fiber laser technology has been demonstrated as a versatile and reliable approach to laser source ma...
Fiber laser technology has been demonstrated as a versatile and reliable approach to laser source ma...
In recent years, lasers have been developed to an essential tool in accelerator science for a variet...
The transition from present high peak-power laser systems, encumbered by low efficiency and repetiti...
Fiber lasers can be considered a revolutionary technology in the laser field thanks to their unique ...
Large arrays of coherently-combined Quasi-Continuous-Wave (QCW) fibre lasers have been identified as...
This work demonstrates, for the first time, simultaneous operation of coherent beam combining (CBC) ...
We discuss the development of high-power fiber-laser products and its industrial and scientific appl...
The performance of fiber laser systems has drastically increased over recent decades, which has open...
Fiber components have now reached a maturity where they can be assembled into complex fiber circuits...
Four years after the first demonstration of Light Amplification by Stimulated Emission of Radiation ...
We are developing an all fiber laser system optimized for providing input pulses for short pulse (1-...
Pour un grand nombre d'applications, les sources laser impulsionnelles femtoseconde (fs) doivent fou...
Fiber lasers have caught the imagination for applications requiring beam combination up to a 100kW o...
Fiber laser technology has been demonstrated as a versatile and reliable approach to laser source ma...
Fiber laser technology has been demonstrated as a versatile and reliable approach to laser source ma...
Fiber laser technology has been demonstrated as a versatile and reliable approach to laser source ma...
In recent years, lasers have been developed to an essential tool in accelerator science for a variet...
The transition from present high peak-power laser systems, encumbered by low efficiency and repetiti...
Fiber lasers can be considered a revolutionary technology in the laser field thanks to their unique ...
Large arrays of coherently-combined Quasi-Continuous-Wave (QCW) fibre lasers have been identified as...
This work demonstrates, for the first time, simultaneous operation of coherent beam combining (CBC) ...
We discuss the development of high-power fiber-laser products and its industrial and scientific appl...
The performance of fiber laser systems has drastically increased over recent decades, which has open...
Fiber components have now reached a maturity where they can be assembled into complex fiber circuits...
Four years after the first demonstration of Light Amplification by Stimulated Emission of Radiation ...
We are developing an all fiber laser system optimized for providing input pulses for short pulse (1-...
Pour un grand nombre d'applications, les sources laser impulsionnelles femtoseconde (fs) doivent fou...