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81.
本文用MonteCarlo方法研究了CsI:Na转换屏中晶柱之间的粘连对其空间分辨特性的影响,给出了不同粘连程度下可见光在转换屏中的点扩展函数及相应的MTF曲线.通过几种不同粘连系数下模拟结果的比较可见,要获得一个高分辨的转换屏应尽可能减小晶柱之间的粘连.对于一个实际的转换屏其粘连系数至少应在40%以下,最好控制在20%以内. 相似文献
82.
半导体带间级联量子阱是实现3~5μm波段中红外激光器的重要前沿,其在半导体光电器件技术、气体检测、医学医疗以及自由空间光通信等诸多领域具有重要科学意义和应用价值。半导体带间级联量子阱发光机理是以二类量子阱中的电子与空穴的带间辐射复合发光为主导,再通过电子注入区与空穴注入区形成级联放大,实现多个量子阱周期内电子与空穴的重复利用。本文综述了半导体带间级联激光器从提出能带结构、外延材料到器件制备技术的发展历程,剖析了器件结构各功能区基本概念和工作原理,介绍了器件结构设计与制备工艺技术难点的里程碑突破,详细解释了载流子再平衡、分别限制层等设计,最后展望了半导体带间级联激光器的发展方向和趋势。 相似文献
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Nuclear mass contains a wealth of nuclear structure information, and has been widely employed to extract the nuclear effective interactions. The known nuclear mass is usually extracted from the experimental atomic mass by subtracting the masses of electrons and adding the binding energy of electrons in the atom. However,the binding energies of electrons are sometimes neglected in extracting the known nuclear masses. The influence of binding energies of electrons on nuclear mass predictions are carefully investigated in this work. If the binding energies of electrons are directly subtracted from the theoretical mass predictions, the rms deviations of nuclear mass predictions with respect to the known data are increased by about 200 ke V for nuclei with Z, N 8. Furthermore, by using the Coulomb energies between protons to absorb the binding energies of electrons, their influence on the rms deviations is significantly reduced to only about 10 ke V for nuclei with Z, N 8. However, the binding energies of electrons are still important for the heavy nuclei, about 150 ke V for nuclei around Z = 100 and up to about 500 ke V for nuclei around Z = 120. Therefore, it is necessary to consider the binding energies of electrons to reliably predict the masses of heavy nuclei at an accuracy of hundreds of ke V. 相似文献
86.
Analysis of detection limit to time-resolved coherent anti-Stokes Raman scattering nanoscopy 下载免费PDF全文
In the implementation of CARS nanoscopy, signal strength decreases with focal volume size decreasing. A crucial problem that remains to be solved is whether the reduced signal generated in the suppressed focal volume can be detected. Here reported is a theoretical analysis of detection limit (DL) to time-resolved CARS (T-CARS) nanoscopy based on our proposed additional probe-beam-induced phonon depletion (APIPD) method for the low concentration samples. In order to acquire a detailed shot-noise limited signal-to-noise (SNR) and the involved parameters to evaluate DL, the T-CARS process is described with full quantum theory to estimate the extreme power density levels of the pump and Stokes beams determined by saturation behavior of coherent phonons, which are both actually on the order of ~ 109 W/cm2. When the pump and Stokes intensities reach such values and the total intensity of the excitation beams arrives at a maximum tolerable by most biological samples in a certain suppressed focal volume (40-nm suppressed focal scale in APIPD method), the DL correspondingly varies with exposure time, for example, DL values are 103 and 102 when exposure times are 20 ms and 200 ms respectively. 相似文献
87.
用快速摄影拍摄了升液管中熔融铝合金液面的运动状态,发现在升液过程中,存在着沿液面切向的流动。这种流动具有撇除表面氧化膜、净化合金液的作用。为实现平稳充型和减少热损耗,设计了正弦速度函数。用实验方法确定了速度振幅。 相似文献
88.
We theoretically study the thermoelectric transport properties through a triple quantum dots (QDs) device with the central QD coupled to a ferromagnetic lead, a superconducting one, and two side QDs with spin-dependent interdot tunneling coupling. The thermoelectric coefficients are calculated in the linear response regime by means of nonequilibrium Green's function method. The thermopower is determined by the single-electron tunneling processes at the edge of superconducting gap. Near the outside of the gap edge the thermopower is enhanced while thermal conductance is suppressed, as a result, the charge figure of merit can be greatly improved as the gap appropriately increases. In the same way, charge figure of merit also can be greatly improved near the outside of the gap edge by adjusting interdot tunneling coupling and asymmetry coupling of the side QDs to central QD. Moreover, the appropriate increase of the interdot tunneling splitting and spin polarization of ferromagnetic lead not only can improve charge thermopower and charge figure of merit, but also can enhance spin thermopower and spin figure of merit. Especially, the interdot tunneling splitting scheme provides a method of controlling charge (spin) figure merit by external magnetic field. 相似文献
89.
Wang Tzyy-Jiann Tsou Yueh-Hsun Chang Wen-Che Niu Huan 《Applied Physics A: Materials Science & Processing》2011,102(2):463-467
We present a new fabrication technique to produce three-dimensional (3D) microstructures on crystalline substrate using selective
ion implantation and chemical etching. Localized lattice-damage layers at the specified depth beneath the substrate surface
are formed by selective ion implantation. After etching out the partial surface regions and the buried lattice-damage layers
by chemical etching, the 3D crystalline microstructures are produced. This technique is demonstrated on LiNbO3 crystal to produce undercutting and free-standing microstructures, including microwire, microring, and microdisk. The measurement
results of micro-Raman spectra show that the used fabrication process does not affect the original crystalline structure.
The features of this technique include smooth structure surface, large undercutting range, and auto-etching stop. By using
multiple implantations or repeating the proposed process several times, versatile 3D crystalline microstructures can be produced. 相似文献
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