Paper | Title | Page |
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MOIDCC002 | Novosibirsk ERL Facility | 33 |
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The first project of the four turn ERL for Novosibirsk FELs (NovoFEL) was proposed at FEL'90 Conference. Later the project was modified, but the base lines kept: a four turn normal conductance linac with energy recovery, low RF cavities (180 MHz), grid controlled DC gun (Q~1 nC, tau=1 nsec, f rep = 10 kHz-50 MHz). The ERL can operate in the three modes, providing an electron beam for the three different FELs (from 300 µm up to 5 µm). Construction and commissioning four track ERL was divided on three stage: the first stage NovoFEL working in spectral range (90-240) µm, based on one track energy recovery linac (ERL) with energy 12 MeV and current 30 mA, was commissioned in 2003. The second stage of NovoFEL working in spectral range (35-80) µm, based on two track energy recovery linac with energy 22 MeV and current 7 mA, was commissioned in 2009. The third stage of NovoFEL working in spectral range (8-15) µm, based on four track energy recovery linac with energy 42 MeV and current 5 mA was commissioned in 2015. | ||
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Slides MOIDCC002 [13.708 MB] | |
DOI • | reference for this paper ※ https://doi.org/10.18429/JACoW-ERL2017-MOIDCC002 | |
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TUIACC002 |
Novosibirsk ERL Based FEL as User Facility | |
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The Novosibirsk free electron laser (NovoFEL) is the first multi-turn energy-recovery linear accelerator with three separate laser systems (the terahertz, far-infrared and mid-infrared ones). Radiation of the FELs is transported now from accelerating hall to thirteen user and diagnostics stations by one optical channel filled dry air-nitrogen mixture. In this paper, we describe main radiation parameters of the NovoFEL, workstations of the facility and survey selected recent experiments using substantially intense monochromatic terahertz laser radiation, which can be tuned from 90 µm to 240 µm. | ||
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Slides TUIACC002 [6.654 MB] | |
Export • | reference for this paper using ※ BibTeX, ※ LaTeX, ※ Text/Word, ※ RIS, ※ EndNote (xml) | |