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51.
52.
We have obtained an analytical expression for the twopulse echo signal arising in nonresonant excitation of a condensed medium with a nonuniformly broadened spectrum of doublet structure by two pulses of an electromagnetic field of different durations and of the same amplitude. It is shown that in the case where the differences between the carrying frequency of exciting pulses and the central frequencies of the spectral lines differ considerably, beatings are formed in the signal of the twopulse echo. The rate of decay of the amplitude of these beatings is found to depend only on the time of reversible and irreversible relaxation, and their circular frequency is determined by the shift of the spectral lines relative to each other. A technique for separate determination of the inhomogeneous width of the lines and time of the irreversible transverse relaxation is suggested which is based on the analysis of the twopulse echo signal beatings. 相似文献
53.
Light pulses of 149 m wavelength and 700 ps duration are generated by non-collinear phase-matched difference frequency mixing of laser pulses at 1053.5 and 1061 nm in a (110) cut GaP crystal. The pump laser pulses are generated in a time-synchronized mode-locked double-frequency Nd:glass laser system consisting of a silicate glass branch and a phosphate glass branch. A photon conversion efficiency of 4 × 10–6 is achieved. The non-linear susceptibility constant of GaP is determined to be d
14 = (10 ± 1) pm V–1. 相似文献
54.
The interaction between intense femtosecond laser pulses
and hydrogen atomic clusters is studied by a simplified Coulomb
explosion model. The dependences of average proton kinetic energy on
cluster size, pulse duration, laser intensity and wavelength are
studied respectively. The calculated results indicate that the
irradiation of a femtosecond laser of longer wavelength on hydrogen
atomic clusters may be a simple, economical way to produce highly
kinetic hydrogen ions. The phenomenon suggests that the irradiation
of femtosecond laser of longer wavelength on deuterium atomic
clusters may be easier than that of shorter wavelength to drive
nuclear fusion reactions. The product of the laser intensity and the
squared laser wavelength needed to make proton energy saturated as a
function of the squared cluster radius is also investigated. The
proton energy distribution calculated is also shown and compared
with the experimental data. Our results are in agreement with the
experimental results fairly well. 相似文献
55.
In this study, AlF3 thin films were deposited by pulse magnetron sputtering of Al targets with different ratios of CF4/O2 gas and at different sputtering powers. The optical and mechanical properties of the AlF3 thin films were analyzed. The transmittance spectra showed no obvious negative inhomogeneous refractive indices. Denser films
with a low optical absorption were obtained when high sputtering powers were used (larger than 30 W). The lowest extinction
coefficient (7.3 × 10−4 at 193 nm) of the films can be reached with 12 sccm O2 flow rate and at 160W sputtering power. All of the residual stresses were compressive and their trends were consistent with
the refractive indices. The lowest compressive stress (0.068 GPa) was obtained when the AlF3 films were prepared at 160W sputtering power. 相似文献
56.
57.
由速率方程和功率传输方程得到信号脉冲平均功率和增益系数随脉冲传输距离的变化关系.利用Ginzburg-landau方程,在信号脉冲功率的不断增强和增益系数的不断变化的情况下,研究超短脉冲的传输演化特性,发现信号脉冲平均功率、能量和增益系数等参量受到色散和非线性效应的影响相对较小,而信号脉冲的峰值功率、时域和频域特性则易受到色散和非线性效应的影响.探讨了在非线性作用下,脉冲分裂和展宽等所导致的脉宽不稳定性对传输特性的影响,表明研究脉冲传输问题时,引入脉宽不稳定性有利于提高数值模拟准确度. 相似文献
58.
Atiyah Yahya B. Gino Fallone 《Journal of magnetic resonance (San Diego, Calif. : 1997)》2009,196(2):170-177
Turbo spectroscopic imaging (TSI) is a spin echo spectroscopic imaging technique in which two or more echoes are acquired per excitation to reduce the acquisition time. The application of TSI has primarily been limited to the detection of uncoupled spins because the signal from coupled spins is modulated as a function of echo time. In this work we demonstrate how the TSI sequence can be modified to observe spins like the C2 protons of Glx (≈3.75 ppm) which are involved solely in weak-coupling interactions. The technique exploits the chemical shift displacement effect by employing TSI refocusing pulses that have bandwidths which are less than the chemical shift difference between the target spins and the spins to which they are weakly coupled. The modified TSI sequence rewinds the J-evolution of the target protons in the slice of interest independently of the echo time or echo spacing, thereby removing any signal variation between successive echoes (apart from T2 relaxation effects). In this study we tailored the narrow-bandwidth TSI sequence for observation of the C2 Glx protons. The echo time was experimentally optimized to minimize signal contamination from myo-inositol, and the efficacy of the method was verified on phantom solutions of Glx and on brain in vivo. 相似文献
59.
“强光一号”短脉冲高能X射线剂量率测量,主要包括脉冲射线总剂量与脉冲射线时间宽度的测量,前者采用热释光剂量计测量,后者采用PIN半导体探测器记录。根据不确定度传递数学模型,分析了影响X射线剂量和脉冲宽度测量结果的因素。针对“强光一号”短脉冲高能X射线测量,定量地给出了各种因素引入的测量不确定度,总剂量测量是影响剂量率测量准确性的决定性因素,其相对标准不确定度为25.1%,脉冲宽度测量不确定度为3.7%,剂量率测量扩展不确定度为50.8%,置信概率95%。 相似文献
60.
In order to realize the qualitative control of the laser-induced changes trend and the quantitative control of the laser-induced changes range in titanium upon laser irradiation with different pulse duration, comparative ablation experiments by femtosecond, picosecond and millisecond pulsed lasers were carried out on titanium in this study. Then the final surface morphology, aspect ratio, chemical composition and microstructural state of the ablated titanium were analyzed by laser scanning confocal microscopy, X-ray photoelectron spectroscopy and transmission electron microscopy, respectively. The dependency of the morphology, size, composition and microstructure of ablated titanium on laser pulse duration variation were emphatically discussed. It is found that, as the laser pulse duration increases from femtosecond to millisecond scale, surface morphology quality of ablated titanium gets worse, aspect ratio of microgroove decreases, proportion of titanium oxides in final ablation products becomes larger and the microstructural state of ablated titanium has a higher amorphization degree, which can be attributed to the decreased laser intensity per pulse and enhanced heat conduction effect in titanium with the pulse duration increasing. 相似文献