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21.
H. Totsuji 《等离子体物理论文集》2012,52(1):74-77
The conduction of electrons through narrow channels formed on the surface of liquid helium is analyzed by numerical simulations. It is shown that, when electrons are strongly coupled, we have nonlinear and even negative dependence of conductance on the width of the constriction which is controlled by the gate voltage (© 2011 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim) 相似文献
22.
23.
24.
Sergey P. Gladchenko Yurii Z. Kovdrya Viktor A. Nikolaenko 《Journal of Molecular Liquids》2005,120(1-3):175-179
Conductivity of electrons in a quasi-one-dimensional (Q1D) system over liquid helium in narrow channels with the parabolic profile of the potential well has been investigated at temperature T, from 0.4 to 1.8 K, for different driving electric fields and radius of channel curvature. The interval of linear electron densities varied from 2.18×103 up to 1.7×106 cm−1.
The inverse mobility (1/μeff) in the electron-ripplon scattering region at the high linear densities of charges in the channel increases with temperature decreasing. This anomalous behavior of the electron transport in the low-temperature region has been explained by either the electron ordering or the polaronic effects in confined conducting channels. The nonlinear behavior of the electron velocity as a function of a driving electric field is supposed to be due to Breg–Cherenkov radiation of the ripplons. The radiation occurred if the velocity of electrons in the channel approaches to the critical value. 相似文献
25.
We calculate the concentrations of vacancies and intersitials in the ground state of a Bose solid which models4He. Because ground-state boson wave functions are nodeless, their probability densities correspond to classical Boltzmann factors, and properties of Bose solids, such as the concentration of vacancies and interstitials, can be calculated using classical statistical mechanics. We model the ground-state wave function of4He with the product (Jastrow) form that corresponds to a classical 1/r
b
pair potential, and use a quasiharmonic approximation to calculate the concentrations of vacancies and interstitials in an fcc lattice with this potential. We find that the fractional concentration of vacancies at the melting point is 1.60×10–5 for 1/r
9 and 6.36×10–6 for 1/r
6, while the interstitial fractional concentrations are 1.32×10–3 and 1.08×10–5, respectively; the defect concentrations decrease by 7–16 orders of magnitude when the crystal density increases by 50%. At the same density, and with the same 1/r
9 potential, the concentration of vacancies in an hcp lattice is essentially the same as in an fcc lattice, but the interstitial concentration is much lower, apparently because the fcc lattice contains a more favorable split-interstitial site than does hcp. Therefore, our fcc vacancy results should be directly relevant for (hcp)4He, providing what we think is a lower bound on the vacancy concentration, while the interstitial concentration in4He is probably much lower than our results. 相似文献
26.
A. K. Shuaibov L. L. Shimon I. V. Shevera A. A. Malinina 《Journal of Applied Spectroscopy》2008,75(1):125-129
We present the results of a study of the emission characteristics of a longitudinal glow discharge based on a mixture of helium
and chlorine. Study of the emission characteristics of the discharge showed that it emits most efficiently in the bands of
the chlorine molecule with maxima at 200 nm and 258 nm in an He-Cl2 mixture (P = 0.2–0.3 kPa). We present the optimization of the average emission power of a UV emitter as a function of the
glow discharge parameters, the pressure, and the composition of the working gas mixture.
Based on solution of the Boltzmann equation for the electron energy distribution function in a discharge based on the optimal
mixture (according to experimental data), we calculated the power losses per unit pressure going toward elementary processes,
the electron transport characteristics, the ionization and attachment coefficients as a function of the parameter E/P. The
calculated parameters of the plasma for the UV emitter allowed us to provide a basis for the qualitative pattern of physicochemical
processes in the studied plasma.
__________
Translated from Zhurnal Prikladnoi Spektroskopii, Vol. 75, No. 1, pp. 121–124, January–February, 2008. 相似文献
27.
Well-annealed 316L stainless steel was first cold rolled to 10% and 20% reductions in thickness and then irradiated by 50 keV He+ to a dose of 1 × 1020 He+/m2 at room temperature. Thermal desorption spectroscopy was used to investigate the helium desorption behaviour at different helium trapping states. The results showed that high-density dislocations had stronger inhibitory effect for helium desorption at temperatures from 800 to 1200 K. Positron annihilation Doppler broadening spectroscopy measurements were used to investigate the distribution of helium irradiation-induced defects. The S–E and ΔS–E plots clearly demonstrated that the helium irradiation-induced defects were trapped and restricted in motion by dislocations. The interaction between dislocations and helium irradiation-induced defects in deformed 316L stainless steel was investigated. 相似文献
28.
获得覆盖较宽温度和压力范围内的等离子体输运性质是进行等离子体传热和流动过程数值模拟的必要条件.本文采用Saha方程计算等离子体组分, 采用基于将Chapman-Enskog方法扩展到高阶近似的方法, 计算获得了电子温度(Te)不等于重粒子温度(Th)的情形下, 在300 K到40000 K的温度范围内氦等离子体的黏性、热导率和电导率. 研究结果表明压力和热力学非平衡参数(θ =Te/Th)对氦等离子体的输运性质有较大的影响. 在局域热力学平衡条件下,计算获得的氦等离子体输运性质和文献报道的数据符合良好. 相似文献
29.
The variational method using a multiconfiguration wavefunction is carried out on the core-excited state 1s2s2p 4P0 for helium negative ion,including mass polarization and relativistic corrections.Binding energy and fine structure are reported.The results are compared with other theoretical and experimental date in the literature. 相似文献
30.
A.I. Karasevskii 《哲学杂志》2015,95(15):1717-1727
We show a possibility for a thermodynamically equilibrium nanocrystalline structure consisting of nanosized solid inclusions to appear in a melt just beyond the melting curve. Thermodynamic stability of the nanocrystalline structure in the melt results from the free energy lowering due to rotational motion of nanoparticles. The main contribution to the reduction of the free energy of the system is due to an increase in the rotational entropy and change in formation energy of nanocrystals, i.e. the nanocrystalline structure in the melt, like vacancies in a crystal, is an equilibrium defect structure of the melt. It is demonstrated that similar nanocrystalline structures can also appear in the vapour phase in the form of liquid nanodrops and in liquid solutions, e.g. in He II. 相似文献