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1.
Appl Opt ; 58(26): 7063-7066, 2019 Sep 10.
Artigo em Inglês | MEDLINE | ID: mdl-31503976

RESUMO

A new type of single-unit polarizing beam-splitting prism is proposed based on negative refraction and total internal reflection in uniaxial crystals. The performance of the proposed design is studied theoretically and experimentally using a calcite prism. The results indicate that the single-unit negative refraction polarization-splitting prism can yield a maximum splitting angle of 19.5° (for an incident light wavelength of 633 nm), whereby the splitting angle is insensitive to changes in the incidence angle. The proposed structure exhibits good stability and reliability. The design is beneficial to application in special working environments involving intense vibration and increased radiation.

2.
Opt Express ; 21(11): 13162-8, 2013 Jun 03.
Artigo em Inglês | MEDLINE | ID: mdl-23736569

RESUMO

Based on the Fermat's principle, the universal theory of refraction and reflection of extraordinary rays (e-rays) in the uniaxial crystal is formulated. Using this theory, a new unit structure prism is designed, and its properties are studied. Based on the theoretical results, such a prism is achieved experimentally by using the Iceland crystal. In both theoretical and experimental studies, this new prism shows excellent polarization splitting performances such as big and adjustable splitting angle, comparing to the conventional Rochon prism. For the sample prism with the optical axis angle of 45°, the splitting angle reaches 19.8°in the normal incidence, and the maximum splitting angle reaches 28.44° while the incidence angle is -4°.

3.
Guang Pu Xue Yu Guang Pu Fen Xi ; 32(4): 1142-4, 2012 Apr.
Artigo em Chinês | MEDLINE | ID: mdl-22715803

RESUMO

In order to get the precision measurement of birefringence of quartz crystal at the communication wavelength 1310nm, based on the principle of precision measurement of phase difference between P and S polarized lights of spectroscopic ellipsometer, a method for precision measurement of birefringence of crystal was designed through the analysis of the Jones matrix under the transmission mode, and the precision measurement of birefringence of quartz crystal at 1 310 nm at room temperature (22 degrees C) was made, the measuring results and error analysis show that the precision reached 10(-6) level, this is the most precise birefringence parameter available, and it is of important significance for the improvement of designing precision of phase retardation devices of quartz.

4.
Guang Pu Xue Yu Guang Pu Fen Xi ; 32(10): 2615-9, 2012 Oct.
Artigo em Chinês | MEDLINE | ID: mdl-23285850

RESUMO

A spectral analysis method for precisely measuring specific rotation of quartz is proposed. The measuring principle is analyzed by using the method of optical matrix. The result indicates that the specific rotation of quartz can be exactly calculated by measuring the transmittance curve of a sample quartz plate sandwiched between two paralleled polarizing prisms, and the correctness of the method is validated by a designed experiment using a spectrophotometer. The data is analyzed, and the rotary dispersion formula of quartz is fitted. Compared with Lowry' formula, our formula is more accurate in visible spectral scope. Errors in the experiment is analyzed and the result shows that the measuring accuracy will be improved by choosing thicker quartz plate, longer wave band, lower scan speed, and smaller slit width.

5.
Opt Express ; 13(18): 7086-90, 2005 Sep 05.
Artigo em Inglês | MEDLINE | ID: mdl-19498731

RESUMO

By theoretical calculations we search the hold-on and hold-off state of the pulse-off electro-optic (EO) Q-switch made of La3Ga5SiO14 (langasite, LGS) which exhibits both electro-optic (EO) effect and optical activity (OA), from which the proper applied voltage and orientation of LGS are determined. For the first time to our knowledge, a pulse-off EO Q-switch made of LGS is successfully designed and used in the Nd:YAG laser cavity. Q-switched pulses with energy 360 mJ and pulse width 8.3 ns are obtained, and the dynamic-static ratio is 80%.

6.
Opt Express ; 13(25): 10120-8, 2005 Dec 12.
Artigo em Inglês | MEDLINE | ID: mdl-19503226

RESUMO

An efficient multi-frequency extracavity Raman laser for nanosecond pulses was realized by taking advantage of the anisotropic optical property of the KGd(WO4)2 crystal. The conversion efficiencies of the converter were investigated versus the pump pulse energy, pump polarization, and output coupling rate experimentally and theoretically. Based on the coupled radiation transfer equations, a theoretical model was deduced to predict the performance of solid-state extracavity Raman lasers. This model was solved numerically to analyze the operation of the extracavity Raman laser with the KGd(WO4)2 crystal, and the numerical results had a good agreement with the experimental ones.

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