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- W2783609764 abstract "Electron Paramagnetic Resonance (EPR) station at the Novosibirsk Free Electron Laser (NovoFEL) user facility is described. It is based on X-band (∼9 GHz) EPR spectrometer and operates in both Continuous Wave (CW) and Time-Resolved (TR) modes, each allowing detection of either direct or indirect influence of high-power NovoFEL light (THz and mid-IR) on the spin system under study. The optics components including two parabolic mirrors, shutters, optical chopper and multimodal waveguide allow the light of NovoFEL to be directly fed into the EPR resonator. Characteristics of the NovoFEL radiation, the transmission and polarization-retaining properties of the waveguide used in EPR experiments are presented. The types of proposed experiments accessible using this setup are sketched. In most practical cases the high-power radiation applied to the sample induces its rapid temperature increase (T-jump), which is best visible in TR mode. Although such influence is a by-product of THz radiation, this thermal effect is controllable and can deliberately be used to induce and measure transient signals of arbitrary samples. The advantage of tunable THz radiation is the absence of photo-induced processes in the sample and its high penetration ability, allowing fast heating of a large portion of virtually any sample and inducing intense transients. Such T-jump TR EPR spectroscopy with THz pulses has been previewed for the two test samples, being a useful supplement for the main goals of the created setup." @default.
- W2783609764 created "2018-01-26" @default.
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- W2783609764 date "2018-03-01" @default.
- W2783609764 modified "2023-09-29" @default.
- W2783609764 title "X-band EPR setup with THz light excitation of Novosibirsk Free Electron Laser: Goals, means, useful extras" @default.
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- W2783609764 cites W1950088148 @default.
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- W2783609764 cites W1970881901 @default.
- W2783609764 cites W1971148127 @default.
- W2783609764 cites W1971751086 @default.
- W2783609764 cites W1973642089 @default.
- W2783609764 cites W1989346916 @default.
- W2783609764 cites W1989369049 @default.
- W2783609764 cites W1996979428 @default.
- W2783609764 cites W2001705814 @default.
- W2783609764 cites W2001933645 @default.
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- W2783609764 cites W2007755781 @default.
- W2783609764 cites W2011976165 @default.
- W2783609764 cites W2012858669 @default.
- W2783609764 cites W2028669438 @default.
- W2783609764 cites W2029635195 @default.
- W2783609764 cites W2030186057 @default.
- W2783609764 cites W2037441822 @default.
- W2783609764 cites W2038577059 @default.
- W2783609764 cites W2040555340 @default.
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- W2783609764 cites W2043479930 @default.
- W2783609764 cites W2044382511 @default.
- W2783609764 cites W2051032382 @default.
- W2783609764 cites W2051655144 @default.
- W2783609764 cites W2055782729 @default.
- W2783609764 cites W2065064923 @default.
- W2783609764 cites W2067665705 @default.
- W2783609764 cites W2072820921 @default.
- W2783609764 cites W2074080611 @default.
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- W2783609764 cites W2087257431 @default.
- W2783609764 cites W2089215097 @default.
- W2783609764 cites W2093958705 @default.
- W2783609764 cites W2135887824 @default.
- W2783609764 cites W2148684067 @default.
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- W2783609764 cites W2160187193 @default.
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- W2783609764 cites W2287718244 @default.
- W2783609764 cites W2317831789 @default.
- W2783609764 cites W2323194582 @default.
- W2783609764 cites W2324210139 @default.
- W2783609764 cites W2329975398 @default.
- W2783609764 cites W2332402427 @default.
- W2783609764 cites W2334941802 @default.
- W2783609764 cites W2335720212 @default.
- W2783609764 cites W2342695309 @default.
- W2783609764 cites W2344889042 @default.
- W2783609764 cites W2395844813 @default.
- W2783609764 cites W2414402924 @default.
- W2783609764 cites W2436356241 @default.
- W2783609764 cites W2514574564 @default.
- W2783609764 cites W2523874369 @default.
- W2783609764 cites W2557098158 @default.
- W2783609764 cites W2564405682 @default.
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- W2783609764 doi "https://doi.org/10.1016/j.jmr.2018.01.009" @default.
- W2783609764 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29360045" @default.
- W2783609764 hasPublicationYear "2018" @default.
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