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961.
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Yuhua Xue Jun Liu Hao Chen Ruigang Wang Dingqiang Li Jia Qu Liming Dai 《Angewandte Chemie (Weinheim an der Bergstrasse, Germany)》2012,124(48):12300-12300
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We present a high power red-green-blue (RGB) laser light source based on cascaded quasi-phasematched wavelength conversions
in a single stoichiometric lithium tantalate. The superiority of the experimental setup is: the facula of the incident beam
is elliptical to increase interaction volume, and the cavity was an idler resonant configuration for realizing more efficient
red and blue light output. An average power of 2 W of quasi-white-light was obtained by proper combination of the RGB three
colors. The conversion efficiency for the power of the quasi-white-light over pump power reached 36%. This efficiency and
powerful RGB laser light source has potential applications in laser-based projection display et al. 相似文献
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Xiang Hao Cuifang Kuang Yanghui Li Xu Liu Yulong Ku Yunshan Jiang 《Optics Communications》2012,285(20):4130-4133
By increasing the hydrophilicity of microsphere, the evaporation of liquid around the microsphere will be evidently eliminated, so that the droplet can remain stable, and it is more feasible to introduce the liquid immersed MMM system in practical utilizations that require long-time observation. Compared with the non-immersed one, the liquid immersed MMM system performs better in various aspects, and it is convenient to choose microspheres on a wider scale. 相似文献
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Based on Galois Field (GF(q)) multiplicative group, a new coding scheme for Quasi-Cyclic Low-Density Parity-Check (QC-LDPC) codes is proposed, and the new coding scheme has some advantages such as the simpler construction, the easier implementation encoding, the lower complexity of the encoding and decoding, the more flexible adjustment of the code length as well as the code rate and so forth. Under the condition of considering the characteristics of optical transmission systems, an irregular QC-LDPC (3843,3603) code to be suitable for optical transmission systems is constructed by applying the proposed new coding scheme. The simulation result shows that the net coding gain (NCG) of the irregular QC-LDPC (3843,3603) code is respectively improved 2.14 dB, 1.19 dB, 0.24 dB and 0.14 dB more than those of the classic RS (255,239) code in ITU-T G.975, the LDPC (32640,30592) code in ITU-T G.975.1, the regular SCG-LDPC (3969,3720) code constructed by the Systematically Constructed Gallager (SCG) coding scheme and the regular QC-LDPC (4221,3956) code at the bit error rate (BER) of 10-8. Furthermore, all the five codes have the same code rate of 93.7%. Therefore, the irregular QC-LDPC (3843,3603) code constructed by the proposed new coding scheme has the more excellent error-correction performance and can be better suitable for optical transmission systems. 相似文献