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SR at the INP: Formula of Success

... including Spring-8 (Japan), ELETTRA (Italy), CLS (Canada), synchrotrons in Brazil and Australia, and the only Russian specialized SR source at the Kurchatov Institute in Moscow. At present, the research group dealing with wigglers is engaged in producing undulators, i. e. superconducting devices with a large number of poles and a low magnetic field. In contrast to wigglers, in undulators the radiation from separate poles is coherent, which provides monochromatic radiation with a substantially higher ...

Modified: 23.04.2018
synchrotron radiation , VEPP-3 , VEPP-4 , wiggler , undulator , SR , supernova , Crab Nebula
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Synchrotron Radiation at the Institute of Nuclear Physics: Formula of Success

... including Spring-8 (Japan), ELETTRA (Italy), CLS (Canada), synchrotrons in Brazil and Australia, and the only Russian specialized SR source at the Kurchatov Institute in Moscow. At present, the research group dealing with wigglers is engaged in producing undulators, i. e. superconducting devices with a large number of poles and a low magnetic field. In contrast to wigglers, in undulators the radiation from separate poles is coherent, which provides monochromatic radiation with a substantially higher ...

Modified: 17.12.2015
synchrotron radiation , VEPP-3 , VEPP-4 , wiggler , undulator
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The Brightest SR Generator

... spectrum) to its customers in the USA, Great Britain, Canada, Germany, Italy, Brazil, Spain, and other countries. These devices differ in their technical performance, because the radiation spectra were optimized for particular tasks. A wiggler and an undulator are specialized sources of synchrotron radiation. The Russian language uses one term for both devices – a “snake.” An electron emits on the curved segment of the trajectory of its motion. The length of this segment depends (as an inverse ...

Modified: 22.08.2012
superconductivity , magnet , wiggler , undulator , synchrotron radiation
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Tour of the Institute of Nuclear Physics: Let There Be Light!

... The main advantage of our laser is that it allows the radiation wavelength to be adjusted in a wide range, from 0.1 to 0.2 mm. What is more, within this range its beam is most powerful. FEL consists of two parts, an accelerator-recuperator and an undulator. To describe the processes in FEL shortly, an electron beam is first accelerated in the accelerator-recuperator. Then, interacting with an electromagnetic wave in the undulator, the beam slows down, giving its energy back to the accelerating ...

Modified: 30.07.2006
FEL , free electron laser , particle accelerators , undulator , light
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