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Electrostatic Modes of Dusty Plasmas in a Uniform Magnetic Field
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作者 王晓钢 王春华 《Plasma Science and Technology》 SCIE EI CAS CSCD 2002年第1期1101-1106,共6页
Electrostatic dusty plasma waves in a uniform magnetic field are studied. Unless the magnetic field is extremely strong, the dust particles can hardly be magnetized, while however, electrons and ions are easily done s... Electrostatic dusty plasma waves in a uniform magnetic field are studied. Unless the magnetic field is extremely strong, the dust particles can hardly be magnetized, while however, electrons and ions are easily done so. Electrostatic modes in such dusty plasmas can then be investigated by making use of the 'moderately magnetized' assumption of magnetized electrons and ions, and unmagnetized dust particles. In a high frequency range, due to the existence of dust component, both frequencies of Lang- muir waves (parallel to the magnetic field) and upper hybrid waves (perpendicular to the field) are reduced. In the frequency range of ion waves, besides the effect on dust-ion-acoustic waves propagating parallel to the magnetic field, the frequency of ion cyclotron waves perpendicular to the magnetic field is also enhanced. In a very low dust frequency range, we find an 'ion-cyclotron- dust-acoustic' mode propagating across the field line with a frequency even slower than dust acoustic waves. 展开更多
关键词 electrostatic modes of Dusty Plasmas in a Uniform Magnetic Field MODE
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Analysis of Landau damping in radially inhomogeneous plasma column
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作者 H Rajabalinia-Jelodar M K Salem +1 位作者 F M Aghamir H Zakeri-Khatir 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第5期365-373,共9页
The Landau damping behavior in a cylindrical inhomogeneous warm magnetized plasma waveguide has been studied.The radial inhomogeneity for different characteristic lengths(L0) with strong spatial dispersion has been ... The Landau damping behavior in a cylindrical inhomogeneous warm magnetized plasma waveguide has been studied.The radial inhomogeneity for different characteristic lengths(L0) with strong spatial dispersion has been taken into account.The analyses have been considered for two limits ωce 〈 ωpe and ωce 〉 ωpe. Due to the radial inhomogeneity of the plasma, all essential equations for studying the Landau damping are calculated in the Bessel–Furrier and differential Bessel–Furrier expansions. The dependence of Landau damping on the inhomogeneity, temperature and external magnetic field for electrostatic modes is scrutinized and described in detail through numerical calculations. The associated numerical results are presented and discussed. 展开更多
关键词 inhomogeneous warm plasma cylindrical plasma waveguide Landau damping electrostatic modes
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Interaction between Ternary Rare Earth Complexes of Cinnamic Acid and Phenanthroline with DNA by Spectroscopy 被引量:3
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作者 郭东方 叶炎 曾正志 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第2期162-166,共5页
The interaction of ternary complexes [RE(phen)(cin)_3(H_2O)](RE= Nd (III),Ce(III),Eu(III))with calf thymus DNA was investigated by electronic absorption spectroscopy, ethidium bromide(EB)-DNA quenching fluorescent spe... The interaction of ternary complexes [RE(phen)(cin)_3(H_2O)](RE= Nd (III),Ce(III),Eu(III))with calf thymus DNA was investigated by electronic absorption spectroscopy, ethidium bromide(EB)-DNA quenching fluorescent spectra and resonance light scattering. All experimental results indicate that the three complexes bind to DNA by the electrostatic mode and the intercalative mode. It is predicted that these complexes show high anticancer activity or other biologic activity. 展开更多
关键词 inorganic chemistry electrostatic and intercalative mode EB-DNA quenching fluorescent spectroscopy absorption spectroscopy resonance light scattering rare earth complexes
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Stochastic motion of the untrapped particle in electrostatic mode
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作者 朱雄伟 《Chinese Physics C》 SCIE CAS CSCD 2010年第3期409-411,共3页
The stochastic energy diffusion of the untrapped particle in the electrostatic mode is investigated analytically. We find that the equilibrium electrostatic field of periodical structure plays the same role as the usu... The stochastic energy diffusion of the untrapped particle in the electrostatic mode is investigated analytically. We find that the equilibrium electrostatic field of periodical structure plays the same role as the usual focusing magnetic field to lead the test particle to stochastic motion. The resonance overlapping criterion for the random state is given, and also the Fokker-Planek-Kohnogorov approach to diffusion is considered for our system. 展开更多
关键词 stochastic acceleration electrostatic mode DIFFUSION
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