Design and properties analysis of total internal reflection gratings for pulse compressor at 1053 nm
High-efficiency compression gratings based on total internal reflection (TIR) are promising alternatives of compressor gratings because of their high diffraction efficiency, potential high damage resistant ability, and compact structure. Dependence of the −1 order diffraction efficiencies on grating...
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Published in: | Current applied physics Vol. 11; no. 1; pp. 21 - 27 |
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2011
한국물리학회 |
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Abstract | High-efficiency compression gratings based on total internal reflection (TIR) are promising alternatives of compressor gratings because of their high diffraction efficiency, potential high damage resistant ability, and compact structure. Dependence of the −1 order diffraction efficiencies on grating parameters is analyzed for TE- and TM-polarized incident light of 1053 nm at Littrow angle, which is calculated by using the rigorous coupled-wave analysis. A more intuitional view on the relation is offered through three-dimensional slicing figures instead of two-dimensional ones. The performances of high-efficiency gratings are compared and regarded as criteria for further choices, including spectral bandwidth, angle bandwidth, dispersion, and intensity distribution. For TE- and TM-irradiations, similar spectral bandwidth and angle bandwidth can be achieved by different grating parameters. However, the computer simulation result on the intensity distributions of the two polarized waves shows that such design should be used under the illumination of TE-polarized wave for lower intensity enhancement ratio, which is an important factor related to the gratings’ damage threshold. |
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AbstractList | High-efficiency compression gratings based on total internal reflection (TIR) are promising alternatives of compressor gratings because of their high diffraction efficiency, potential high damage resistant ability, and compact structure. Dependence of the −1 order diffraction efficiencies on grating parameters is analyzed for TE- and TM-polarized incident light of 1053 nm at Littrow angle, which is calculated by using the rigorous coupled-wave analysis. A more intuitional view on the relation is offered through three-dimensional slicing figures instead of two-dimensional ones. The performances of high-efficiency gratings are compared and regarded as criteria for further choices, including spectral bandwidth, angle bandwidth, dispersion, and intensity distribution. For TE- and TM-irradiations, similar spectral bandwidth and angle bandwidth can be achieved by different grating parameters. However, the computer simulation result on the intensity distributions of the two polarized waves shows that such design should be used under the illumination of TE-polarized wave for lower intensity enhancement ratio, which is an important factor related to the gratings’ damage threshold. High-efficiency compression gratings based on total internal reflection (TIR) are promising alternatives of compressor gratings because of their high diffraction efficiency, potential high damage resistant ability,and compact structure. Dependence of the 1 order diffraction efficiencies on grating parameters is analyzed for TE- and TM-polarized incident light of 1053 nm at Littrow angle, which is calculated by using the rigorous coupled-wave analysis. A more intuitional view on the relation is offered through three-dimensional slicing figures instead of two-dimensional ones. The performances of high-efficiency gratings are compared and regarded as criteria for further choices, including spectral bandwidth, angle bandwidth, dispersion, and intensity distribution. For TE- and TM-irradiations, similar spectral bandwidth and angle bandwidth can be achieved by different grating parameters. However, the computer simulation result on the intensity distributions of the two polarized waves shows that such design should be used under the illumination of TE-polarized wave for lower intensity enhancement ratio,which is an important factor related to the gratings’ damage threshold. KCI Citation Count: 1 |
Author | Bi, Qunyu Zheng, Jiangjun Sun, Meizhi Wang, Jianpeng Zhang, Fuling Xie, Xinglong Guo, Ailin Yang, Qingwei Lin, Zunqi |
Author_xml | – sequence: 1 givenname: Qunyu surname: Bi fullname: Bi, Qunyu email: luoxuele@gmail.com – sequence: 2 givenname: Jiangjun surname: Zheng fullname: Zheng, Jiangjun – sequence: 3 givenname: Ailin surname: Guo fullname: Guo, Ailin – sequence: 4 givenname: Meizhi surname: Sun fullname: Sun, Meizhi – sequence: 5 givenname: Jianpeng surname: Wang fullname: Wang, Jianpeng – sequence: 6 givenname: Fuling surname: Zhang fullname: Zhang, Fuling – sequence: 7 givenname: Qingwei surname: Yang fullname: Yang, Qingwei – sequence: 8 givenname: Xinglong surname: Xie fullname: Xie, Xinglong – sequence: 9 givenname: Zunqi surname: Lin fullname: Lin, Zunqi |
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Keywords | Grating performance analysis Total internal reflection gratings Pulse compressor |
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SubjectTerms | computer simulation Grating performance analysis lighting physics Pulse compressor slicing Total internal reflection gratings 물리학 |
Title | Design and properties analysis of total internal reflection gratings for pulse compressor at 1053 nm |
URI | https://dx.doi.org/10.1016/j.cap.2010.06.005 https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART001520892 |
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