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2005年02月23日

【期刊论文】Candidate mode for electron thermal energy transport in mulU-keV plasmas

蒲以康, B. Coppi, S. Migliuolo, -and Y-K. Pu

Phys Fluids B2 (10), October 1990,-0001,():

-1年11月30日

摘要

The linear and quasilinear theory of the collisionless trapped electron mode (also called the "ubiquitous" mode) is analyzed, in order to illustrate its possible role in the electron thermal energy transport observed in magnetically confined plasmas. This instability is driven by the combined effects of the plasma pressure gradient (which includes the contributions from the temperature gradients of ions and electrons) and of the local magnetic curvature drift of trapped electrons and of circulating and trapped ions. Depending on the value of its wavelength across the magnetic field, this mode can connect with a branch of the ion temperature gradient instability, provided the ion temperature gradient is sufficiently strong. Also, under certain conditions, it can be driven unstable solely by a combination of electron temperature gradient and Landau damping by trapped electrons. The relevant modes are found to be robust against variation of parameters such as the electron collisionality, and to be consistent candidates in order to explain the experimentally observed rate of electron thermal energy transport from the center of the plasma column.

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2005年02月23日

【期刊论文】Polymer coating on the surface of zirconia nanoparticles by inductively coupled plasma polymerization

蒲以康, Wei He, Zhigang Guo, and Yikang Pu a), Luting Yan, and Wenjie Si

Appl. Phys. Lett., Vol. 85, No.6, 9 August 2004,-0001,():

-1年11月30日

摘要

Polymer coating on the surface of inorganic ceramic nanoparticles is beneficial to decrease agglomeration and improve dispersion in organic solvent in ceramic injection moulding technology. A layer of thin polymer film on zirconia nanoparticles is deposited by inductively coupled ethylene/nitrogen plasma. Transmission electron microscopy photographs indicate the presence of uniform polymer coatings and the thickness of the polymer layer is estimated as several nanometers. The chemical structure of the film is revealed as quasi-polyethylene long hydrocarbon chain by x-ray photoelectron spectroscopy examination.

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  • 蒲以康 邀请

    清华大学,北京

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