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Free-electron lasers driven by RF linacs

C. A. Brau

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Abstract

Using an electron beam in a magnetic field as the gain medium, free-electron lasers offer a powerful new source of tunable, coherent radiation. Results are just becoming available from several new experiments, but they confirm the theoretical promise of these devices. Backed up by a strong base of accelerator technology, free-electron lasers using RF linacs are expected to become important in applications requiring wavelengths from the infrared part of the spectrum to the vacuum ultraviolet.

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What this paper is about

Using an electron beam in a magnetic field as the gain medium, free-electron lasers offer a powerful new source of tunable, coherent radiation. Results are just becoming available from several new experiments, but they confirm the theoretical promise of these devices. Backed up by a strong base of accelerator technology, free-electron lasers using RF linacs are expected to become important in applications requiring wavelengths from the infrared part of the spectrum to the vacuum ultraviolet.

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OpenAlex reports 16 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Using an electron beam in a magnetic field as the gain medium, free-electron lasers offer a powerful new source of tunable, coherent radiation. Results are just becoming available from several new experiments, but they confirm the theoretical promise of these devices. Backed up by a strong base of accelerator technology, free-electron lasers using RF linacs are expected to become important in applications requiring wavelengths from the infrared part of the spectrum to the vacuum ultraviolet.

Key concepts: Laser, Free electron model, Optoelectronics, Cathode ray, Linear particle accelerator, Radio frequency, Electron, Physics

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