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L. L. Kiang G. C. Kiang P. K. Teng G. C. Jon T. H. Yuan Y. M. Hsu 《Zeitschrift für Physik A Hadrons and Nuclei》1989,333(1):19-28
The excited states of154Gd populated by theβ-decay of154Eu (T 1/2=8.5y) have been studied. With a HPGe-NaI (T1) Compton suppression spectrometer and a HPGe-NaI(T1) coincidence circuitυ-ray singles spectra, coincidence spectra and theγ-γ directional correlational functions have been obtained. The deduced mixing ratios of multipolarities are presented. The energy levels and the relativeB(E2) values of the variousγ-transitions in154Gd nucleus have been calculated both in the IBA model and it's extended version with boson surface delta interaction (BSDI). 相似文献
73.
A contrastive study on the influences of radial and three-dimensional satellite gravity gradiometry on the accuracy of the Earth's gravitational field recovery 下载免费PDF全文
The accuracy of the Earth’s gravitational field measured from the gravity field and steady-state ocean circulation explorer(GOCE),up to 250 degrees,influenced by the radial gravity gradient V zz and three-dimensional gravity gradient V ij from the satellite gravity gradiometry(SGG) are contrastively demonstrated based on the analytical error model and numerical simulation,respectively.Firstly,the new analytical error model of the cumulative geoid height,influenced by the radial gravity gradient V zz and three-dimensional gravity gradient V ij are established,respectively.In 250 degrees,the GOCE cumulative geoid height error measured by the radial gravity gradient V zz is about 2 1/2 times higher than that measured by the three-dimensional gravity gradient V ij.Secondly,the Earth’s gravitational field from GOCE completely up to 250 degrees is recovered using the radial gravity gradient V zz and three-dimensional gravity gradient V ij by numerical simulation,respectively.The study results show that when the measurement error of the gravity gradient is 3×10 12 /s 2,the cumulative geoid height errors using the radial gravity gradient V zz and three-dimensional gravity gradient V ij are 12.319 cm and 9.295 cm at 250 degrees,respectively.The accuracy of the cumulative geoid height using the three-dimensional gravity gradient V ij is improved by 30%-40% on average compared with that using the radial gravity gradient V zz in 250 degrees.Finally,by mutual verification of the analytical error model and numerical simulation,the orders of magnitude from the accuracies of the Earth’s gravitational field recovery make no substantial differences based on the radial and three-dimensional gravity gradients,respectively.Therefore,it is feasible to develop in advance a radial cold-atom interferometric gradiometer with a measurement accuracy of 10 13 /s 2-10 15 /s 2 for precisely producing the next-generation GOCE Follow-On Earth gravity field model with a high spatial resolution. 相似文献
74.
Wave propagation and damping mechanism due to elastic coating of the sea surface is considered. The hydrodynamic performance of an elastic plate is analyzed for various conditions in terms of wave reflection and transmission, plate deflection, and surface strain. Rigidity and geometrical scales of the coating plate essentially affect the wave transmission characteristics. The model of wave propagation and scattering is constructed in the long-wave approximation. The case of elastic plate with fixed edges is considered. It is shown that optimally designed horizontal flexible membrane can be a very effective wave barrier in a beach zone. 相似文献
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A novel optical element, axilens, proposed by Davidson et al., for achieving extended focal length is introduced. We propose a method to design the binary axilens which has high diffraction efficiency. Using computer numerical simulation, we designed 4 axilenses each has different parameters. In this paper we present our results and make comparison with that in ref. [1]. The properties of binary axilens such as the focal depth, the lateral resolution and the intensity distribution along axis is discussed. 相似文献
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Yi-Cheng Hsu 《Optical Review》2011,18(1):27-33
The effect of lens inner structure on radiation pattern and light extraction efficiency of light-emitting diode (LED) and
the application to artificial light in compact greenhouse is demonstrated. A commercial software package of Trace Pro and
one-factor at-a-time (OFAT) method are used to simulate the lens with different inner structure. The optimum parameters of
lens inner structure design for the maximum light extraction efficiency and the best uniform luminous are described by the
corner radius of curvature, lens width, and lens height, respectively. For a real single LED module, base on the optimum parameters
of lens inner structure, the corresponding best luminous uniformity is 62% and corresponding output extraction is 14.11 lm.
The maximum uniformity of illumination for LED matrix assembled by LED modules with optimum lens is 88% and corresponding
light extraction 1141 lm. In comparison with a commercial artificial light of LED matrix used in agriculture, the high-power
LED module with proposed lens inner structure exhibit good improvement in uniformity of illumination and light extraction.
This study may provide a practical guideline for design and fabrication of a high-performance lens used in various compact
agricultural applications. 相似文献
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