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排序方式: 共有249条查询结果,搜索用时 375 毫秒
71.
棉子糖乙酰化物的2D—NMR研究 总被引:1,自引:0,他引:1
应用氢-氢和碳-氢相关谱(~1H-~1H COSY and~(13)C-~1H COSY),同核和异核J-分解谱(JRES and HETJRES),异核中继相干传递二维谱(RELAY)和异核远程化学位移相关谱(COLOC)研究了棉子糖乙酰化物的化学结构,并对COLOC及RELAY实验的参数取值进行了讨论。结果表明,二维核磁共振技术特别是COLOC对于确定配糖体糖基的连接顺序和连接位置是十分有效的方法。 相似文献
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75.
Two localized CO<sub>2</sub> laser treatment methods for mitigation of UV damage growth in fused silica 下载免费PDF全文
Two methods:high-power,short-time,single-shot irradiation(Method A) and low-power,long-time,multi-shot irradiation(Method B) are investigated to mitigate the UV damage growth in fused silica by using a 10.6-μm CO2 laser.To verify the mitigation effect of the two methods,the laser induced damage thresholds(LIDTs) of the mitigated sites are tested with a 355-nm,6.4-ns Nd:YAG laser,and the light modulation of the mitigation sites are tested with a 351-nm continuous Nd:YLF laser.The mitigated damaged sites treated with the two methods have almost the same LIDTs,which can recover to the level of pristine material.Compared with Method A,Method B produces mitigated sites with low crater depth and weak light modulation.In addition,there is no raised rim or re-deposited debris formed around the crater edge for Method B.Theoretical calculation is utilized to evaluate the central temperature of the CO2 laser beam irradiated zone and the radius of the crater.It is indicated that the calculated results are consistent with the experimental results. 相似文献
76.
采用第一性原理方法详细研究了氟化钙结构的多种金属氢化物MH2 (M= La, Nd, Gd, Tb, Y, Dy, Ho, Er, Lu, Sc, Ti, Zr, Hf)的力学性质(弹性常数、体弹模量、剪切模量、杨氏模量).计算结果表明, MH2 (M= La, Nd, Gd, Tb, Y, Dy, Ho, Er, Lu, Sc)在低温下具有稳定的氟化钙结构,其抵抗体积形变, 切应变和拉伸(或压缩)形变的能力从LaH2, NdH2, GdH2, TbH2, YH2, DyH2, HoH2, ErH2, LuH2到ScH2逐次递增, 而MH2 (M= Ti, Zr, Hf)在低温下的氟化钙结构不稳定.通过对两种稳定的氢化物(TbH2, ErH2) 和两种不稳定的氢化物(TiH2, HfH2)的电子态密度以及差分电荷密度进行对比, 发现它们的稳定性与金属和氢之间的相互作用有密切关系. 相似文献
77.
建立了含有裂纹或气泡的高斯型修复坑的3维模型, 用3维时域有限差分方法研究了熔石英后表面该类缺陷对355 nm入射激光的近场调制. 研究表明, 裂纹的调制明显大于气泡或者高斯坑本身, 因此为了抑制修复元件的初始损伤, 应尽量避免任何未修复的裂纹存在, 尤其是与入射光呈夹角约25°的裂纹, 同时应避免尺寸大于5 λ 的气泡存在. 当裂纹或气泡位于近表面层3 λ 以内且靠近修复坑环边缘时, 对场的调制最明显. 随着侧移的增加, 近表面区缺陷诱导场叠加, 强点总数涨落较大且易形成极大峰值, 特别是含有裂纹的情形; 远表面区强点总数逐渐增大并趋于稳定. 随着嵌深的增加, 强点的数目大体呈减弱趋势, 当嵌深大于3 λ 时, 逐渐趋于平缓振荡. 如果裂纹或气泡位于坑点正下方几个波长内, 激光辐照下其效果相当于延长了高斯坑的深度. 相似文献
78.
采用FAC (flexible atomic code)程序, 在细致能级层次计算等离子体原子结构参数和等离子体中各种原子物理过程的基础上, 建立了等离子体中各种能级布居的速率方程, 其中考虑了等离子体中各种原子物理过程的影响. 通过求解基于细致能级的速率方程, 计算了Z箍缩产生的Al等离子体辐射的细致能谱结构, 对实验谱进行了辨认和归类, 并对实验测量谱的成分做了简单分析.
关键词:
Z箍缩
细致能级
非局域热动平衡
速率方程 相似文献
79.
Rear-surface light intensification caused by Hertzian-conical crack in 355-nm silica optics 下载免费PDF全文
Theoretical studies show that the Hertzian-conical crack can be considered to be composed of double cone faces for simplification. In the present study, the three-dimensional finite-difference time-domain method is employed to quantify the electric-field distribution within the subsurface in the presence of such a defect under the normal incidence irradiation. Both impurities (inside the crack) and the chemical etching have been investigated. The results show that the maximum electric field amplitude |E| max is 9.57374 V/m when the relative dielectric constant of transparent impurity equals 8.5. And the near-field modulation will be improved if the crack filled with remainder polishing powders or water vapor/drops. Meanwhile, the laser-induced initial damage is moving to the glass-air surface. In the etched section, the magnitude of intensification is strongly dependent on the inclination angle θ. There will be a highest modulation when θ is around π /6, and the maximum value of |E| max is 18.57314 V/m. When θ ranges from π /8 to π /4, the light intensity enhancement factor can easily be larger than 100, and the modulation follows a decreasing trend. On the other hand, the modulation curves become smooth when θ > π /4 or θ < π /8. 相似文献
80.
Numerical simulation of the modulation to incident laser by the repaired damage site in a fused silica subsurface 下载免费PDF全文
One of the main factors of laser induced damage is the modulation to incident laser which is caused by the defect in the subsurface of the fused silica.In this work,the repaired damage site irradiated by CO 2 laser is simplified to a Gaussian rotation according to the corresponding experimental results.Then,the three-dimensional finite-difference time-domain method is employed to simulate the electric field intensity distribution in the vicinity of this kind of defect in fused silica front subsurface.The simulated results show that the modulation is notable,the E max is about 2.6 times the irradiated electric field intensity in the fused silica with the damage site (the width is 1.5 μm and depth is 2.3 μm) though the damage site is repaired by CO 2 laser.The phenomenon and the theoretical result of the annular laser enhancement existed on the rear surface are first verified effectively,which agrees well with the corresponding experimental results.The relations between the maximal electric field intensity in fused silica with defect depth and width are given respectively.Meanwhile,the corresponding physical mechanism is analysed theoretically in detail. 相似文献