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- W2029771969 abstract "The influence of a magnetic field on electron transport coefficients in mercury vapour has been studied using a Monte-Carlo simulation technique. The ranges of parameters studied are 10<or=E/N<or=1000 Td and O<or=B/N<or=20*10-19T cm3 (where E is the electric field, B the magnetic field and N the gas number density). Data on ionization coefficients, transverse and perpendicular drift velocities and mean energy are evaluated at various magnetic field strengths. The results are examined in the light of the effective reduced electric field (EREF) concept. It is found that the EREF is a good approximation for the mean energy, collision frequency and ionization coefficient if the appropriate collision frequency which is dependent on E/N and B/N (instead of a constant collision frequency) is used in EREF calculations. As a result, the application of a magnetic field perpendicular to the electric field decreases the transverse drift velocity, mean energy and ionization coefficient. The influence of the magnetic field on the energy distribution function is also studied." @default.
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- W2029771969 date "1992-03-14" @default.
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- W2029771969 title "Electron transport coefficients in mercury vapour in E*B fields" @default.
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- W2029771969 doi "https://doi.org/10.1088/0022-3727/25/3/019" @default.
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