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21.
In this work, the linear and nonlinear optical properties are studied theoretically in asymmetric (CdS/ZnSe/BeTe)/(ZnSe/BeTe) quantum wells. The electronic states are calculated using the envelope wave function approximation and the intersubband transition energies are studied as a function of CdS and ZnSe well thicknesses as well as doping concentration. The optimum parameters carrying out the transition energy 0.8 eV (1.55 μm wavelength) are given. Results are presented for the linear, the third order nonlinear optical absorption and the refractive index changes in the studied heterostructure. Results show that the changes in the linear and the third order nonlinear optical absorption as well as refractive index change are as important as the temperature is high, the nonlinear terms must be taken into consideration especially near the resonance. 相似文献
22.
Hala J. El-Khozondar Rifa J. El-Khozondar Said Zouhdi 《Applied Physics A: Materials Science & Processing》2012,109(4):865-867
The surface wave propagation at the interface between tunable metamaterials (MTMs) and nonlinear media is investigated. Tunable MTMs have a refractive index which can be tuned to negative?Czero?Cpositive values. The nonlinear media are assumed to have a Kerr-like refractive index. The dispersion equation is analytically derived and solved numerically. Results display the different behaviors of the propagating waves as the refractive index is tuned. 相似文献
23.
We investigated the effects of boron atoms substitution on the thermal conductivity and mechanical properties of single-layer graphene using the non-equilibrium molecular dynamics (NEMD) simulations. By performing the uniaxial tension simulations, we observed that substituted boron atoms slightly decrease the elastic modulus and tensile strength of graphene. On the other hand, it was observed that only 0.75% concentration of boron atoms in graphene reduces the thermal conductivity of graphene by more than 60% and leads to vanishing chirality effect. 相似文献
24.
25.
High‐energy‐resolution diced spherical quartz analyzers for resonant inelastic X‐ray scattering 下载免费PDF全文
Ayman H. Said Thomas Gog Michael Wieczorek XianRong Huang Diego Casa Elina Kasman Ralu Divan Jung Ho Kim 《Journal of synchrotron radiation》2018,25(2):373-377
A novel diced spherical quartz analyzer for use in resonant inelastic X‐ray scattering (RIXS) is introduced, achieving an unprecedented energy resolution of 10.53 meV at the Ir L3 absorption edge (11.215 keV). In this work the fabrication process and the characterization of the analyzer are presented, and an example of a RIXS spectrum of magnetic excitations in a Sr3Ir2O7 sample is shown. 相似文献
26.
Hernán J. Cervantes Antonio C. Bloise Said R. Rabbani 《Applied magnetic resonance》2010,38(4):417-429
In this paper, we propose a new method of measuring the very slow paramagnetic ion diffusion coefficient using a commercial
high-resolution spectrometer. If there are distinct paramagnetic ions influencing the hydrogen nuclear magnetic relaxation
time differently, their diffusion coefficients can be measured separately. A cylindrical phantom filled with Fricke xylenol
gel solution and irradiated with gamma rays was used to validate the method. The Fricke xylenol gel solution was prepared
with 270 Bloom porcine gelatin, the phantom was irradiated with gamma rays originated from a 60Co source and a high-resolution 200 MHz nuclear magnetic resonance (NMR) spectrometer was used to obtain the phantom 1H profile in the presence of a linear magnetic field gradient. By observing the temporal evolution of the phantom NMR profile,
an apparent ferric ion diffusion coefficient of 0.50 μm2/ms due to ferric ions diffusion was obtained. In any medical process where the ionizing radiation is used, the dose planning
and the dose delivery are the key elements for the patient safety and success of treatment. These points become even more
important in modern conformal radio therapy techniques, such as stereotactic radiosurgery, where the delivered dose in a single
session of treatment can be an order of magnitude higher than the regular doses of radiotherapy. Several methods have been
proposed to obtain the three-dimensional (3-D) dose distribution. Recently, we proposed an alternative method for the 3-D
radiation dose mapping, where the ionizing radiation modifies the local relative concentration of Fe2+/Fe3+ in a phantom containing Fricke gel and this variation is associated to the MR image intensity. The smearing of the intensity
gradient is proportional to the diffusion coefficient of the Fe3+ and Fe2+ in the phantom. There are several methods for measurement of the ionic diffusion using NMR, however, they are applicable
when the diffusion is not very slow. 相似文献
27.
1H-NMR spectrum of tiaprofenic acid in CDCI3 was obtained and proton chemical shifts from tetramethylsilane were assigned to each proton and set of equivalent protons of the molecule. The hydroxy proton of the carboxylic acid group was confirmed by deuterium exchange. The natural abundance C-13 nuclear magnetic resonance spectrum of the compound in CDCI3 was recorded using Fourier transorm technique. The chemical shifts of carbon resonances have been assigned on the basis of the chemical shift additivity theory and the signal multiplicity observed in the single frequency off-resonance decoupled (SFORD) spectrum. Also comparison with carbon chemical shifts of model compounds were useful. 相似文献
28.
29.
An efficient method for preparation of 4,6 or 5,6 disubstituted 3-aminopyridazines was easily carried out starting from easily available 4-bromo-pyridazine-3,6-dione, and using combination of both amination and Pd(0) cross-coupling reactions under microwave irradiation. 相似文献
30.
Lasers operating at 1.3 μm have attracted considerable attention owing to their potential to provide efficient light sources for next-generation high-speed communication systems. InAs/GaAs quantum dots (QDs) were pointed out as a reliable low-cost way to attain this goal. However, due to the lattice mismatch, the accumulation of strain by stacking the QDs can cause dislocations that significantly degrade the performance of the lasers. In order to reduce this strain, a promising method is the use of InAs QDs embedded in InGaAs layers. The capping of the QD layer with InGaAs is able to tune the emission toward longer and controllable wave-lengths between 1.1 and 1.5 μm. In this work, using the effective-mass envelope-function theory, we investigated theoretically the optical properties of coupled InAs/GaAs strained QDs based structures emitting around 1.33 μm. The calculation was performed by the resolution of the 3D Schrödinger equation. The energy levels of confined carriers and the optical transition energy have been investigated. The oscillator strengths of this transition have been studied with and without taking into account the strain effect in the calculations. The information derived from the present study shows that the InGaAs capping layer may have profound consequences as regards the performance of an InAs/GaAs QD based laser. Based on the present results, we hope that the present work make a contribution to experimental studies of InAs/GaAs QD based structures, namely the optoelectronic applications concerning infrared and mid-infrared spectral regions as well as the solar cells. 相似文献