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991.
Amorphous gallium nitride (a-GaN) thin films were deposited on glass substrate by electron beam evaporation technique at room
temperature and high vacuum using N
2 as carrier gas. The structural properties of the films was studied by X-ray diffraction (XRD) and scanning electron microscope
(SEM). It was clear from XRD spectra and SEM study that the GaN thin films were amorphous. The absorbance, transmittance and
reflectance spectra of these films were measured in the wavelength range of 300–2200 nm. The absorption coefficient spectral
analysis in the sharp absorption region revealed a direct band gap of E
g = 3:1 eV. The data analysis allowed the determination of the dispersive optical parameters by calculating the refractive
index. The oscillator energy E
0 and the dispersion energy E
d, which is a measure of the average strength of inter-band optical transition or the oscillator strength, were determined.
Electrical conductivity of a-GaN was measured in a different range of temperatures. Then, activation energy of a-GaN thin
films was calculated which equalled E
a = 0:434 eV. 相似文献
992.
993.
The dynamics of information traffic over scale-free networks has been investigated systematically. A series of routing strategies
of data packets have been proposed, including the local routing strategy, the next-nearest-neighbour routing strategy, and
the mixed routing strategy based on local static and dynamic information. The capacity of the network can be quantified by
the phase transition from free flow state to congestion state. The optimal parameter values of each model leading to the highest
efficiency of scale-free networked traffic systems have been found. Moreover, we have found hysteretic loop in networked traffic
systems with finite packets delivering ability. Such hysteretic loop indicates the existence of the bi-stable state in the
traffic dynamics over scale-free networks.
相似文献
994.
Yuanyuan Li Jie Sun Li Wang Peng Zhan Zhishen Cao Zhenlin Wang 《Applied Physics A: Materials Science & Processing》2008,92(2):291-294
A sensor based on surface plasmon resonance (SPR) of plasmonic crystals fabricated via a colloidal-crystal-assisted templating
method is studied. Plasmonic crystals are prepared by depositing a thin gold (Au) layer onto a two-dimensional array of polystyrene
spheres self-assembled on a quartz substrate. The enhanced transmission as a result of the SPR of Au plasmonic crystals, which
are immersed in different ambient liquids, are measured and compared with that of polystyrene (PS) microsphere templates of
different sizes, both before and after removal of Au nanoprisms formed on the quartz substrate through pores among the spheres.
It is found that the measured sensitivities exhibit a linear dependence on the refractive index of the surrounding medium
and are linked to coupling effects between SPRs on the corrugated Au film and nanoislands. The feasibility of the SPR system
in molecular monolayer detection is further demonstrated through a formation of alkanethiolate self-assembled monolayers on
the Au film surface, which causes a 4 nm red-shift of the main SPR.
PACS 07.07.Df; 73.20.Mf; 78.66.-w; 81.16.Dn 相似文献
995.
An improved transmission line model to study the thermal effects in semiconductor laser diodes is reported in this paper.
The temperature effects in the laser characteristics are obtained by incorporating temperature dependent gain and carrier
density equations for the laser cavity. These primary factors are introduced in the regular transmission line laser model
to estimate the static and dynamic characteristics of an 1.3μm InGaAsP double heterostructure laser diode. The results show
good agreement with the experimental observation and solution of rate equations referred in the literature. The key feature
of this model is that it provides the laser spectra at various temperatures. Based on the model, time dependent evolution
of optical spectrum, temperature dependent optical output and frequency chirp are evaluated. Further the distribution of photon
and electron density within the cavity is also determined. 相似文献
996.
997.
Peter Gregorčič Rok Petkovšek Janez Možina Griša Močnik 《Applied Physics A: Materials Science & Processing》2008,93(4):901-905
We present an optodynamic measurement of a laser-induced cavitation bubble and its oscillations based on a scanning technique
using a laser beam-deflection probe. The deflection of the beam was detected with a fast quadrant photodiode which was built
into the optical probe. The applied experimental setup enabled us to carry out one- or two-dimensional scanning of the cavitation
bubble, automatic control of the experiment, data acquisition and data processing. Shadow photography was used as a comparative
method during the experiments. 相似文献
998.
Polyaniline/Zn0.5Cu0.5Fe2O4 nanocomposite was synthesized by a simple, general and inexpensive in-situ polymerization method in w/o microemulsion. The
effects of polyaniline coating on the magnetic properties of Zn0.5Cu0.5Fe2O4 nanoparticles were investigated. The structural, morphological and magnetic properties of as-prepared samples were characterized
by X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectra, scanning electron microscopy (SEM) and magnetic measurements.
The morphology analysis confirmed that polyaniline was deposited on the porous surface of magnetic Zn0.5Cu0.5Fe2O4. It was shown that the saturation magnetization and coercivity of Zn0.5Cu0.5Fe2O4 decreased after polyaniline coating, which can be interpreted by the interparticle dipole–dipole interactions that contributed
to magnetic anisotropy and changed the magnetic properties of the nanoparticles.
PACS 74.25.Ha; 81.05.-t; 81.05.Lg 相似文献
999.
Jongho Shin Kyungsik Jang Ki-Soo Lim Ik-Bu Sohn Young-Chul Noh Jongmin Lee 《Applied Physics A: Materials Science & Processing》2008,93(4):1015-927
We report the spectroscopic properties of femtosecond laser-irradiated sodium-alumino-borate glass doped with silver and gold
ions. We precipitated gold and silver nanoparticles by laser irradiation and annealing at 400°C for 30 min. The irradiation
and annealing treatment produced different absorption and emission characteristics in Au3+ doped and Au3+, Ag+ codoped glasses, and the possible mechanisms of the observed results are discussed. The size of the nanoparticles was estimated
by TEM and absorption band analysis. 相似文献
1000.
The bending problem of a magnetic film-nonmagnetic substrate cantilever system is studied by using the principle of energy
minimization. Emphasis is placed on the analysis of geometrical and physical parameter dependence of the neutral plane, internal
film stress and strain of the cantilever system, and then the influence of such a parameter on the bending characteristic
is presented. The results indicate, owing to the anisotropic expanding feature of the magnetostriction, that the neutral plane
is generally anisotropic, and moves downwards rapidly with the increasing thickness ratio. Meanwhile, the bounding rigidity
of substrate on the film will decrease with the increasing thickness ratio, and thus release the film stress, i.e., it decreases,
but the film strain increases. The effect of Poisson’s ratio of the materials on the film strain, the stress and the neutral
plane in the direction transverse to the magnetization is prominent. For the strain and the stress in the magnetization, however,
the role of Poisson’s ratio is inconspicuous. This property is due to the initiative elongating (or contracting) feature of
the magnetic film along its magnetization.
Supported by the National Natural Science Foundation of China (Grant No. 10762001), the Key Project of the Chinese Ministry
of Education (Grant No. 206024), and the Program for New Century Excellent Talents in University of China (Grant No. NCET-2005-0272) 相似文献