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Numerical calculations of two-beam energy coupling gains in photorefractive BaTiO/sub 3/ crystal

机译:光折变BaTiO / sub 3 /晶体中两束能量耦合增益的数值计算

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Steady-state two-beam energy coupling gains are numerically obtained in photorefractive BaTiO/sub 3/ crystal. The energy coupling gains are calculated by changing the angle subtended by two incident beams and by rotating the crystal relative to the grating wave vector. Polarizations of the two incident beams are assumed to be (ordinary, ordinary), (extraordinary, extraordinary), (ordinary, extraordinary), or (extraordinary, ordinary). The wavelength of the beams is assumed to be 515 nm. The maximum coupling gain is found to be 4.8/cm when both beams are ordinary and 74.7/cm when the beams are extraordinary. It is also shown that energy can transfer between ordinary (extraordinary) and extraordinary (ordinary) beams. In this case the maximum energy coupling gain is found to be 9.2/cm.
机译:在光折变BaTiO / sub 3 /晶体中获得了稳态的两束能量耦合增益。通过改变两个入射光束对向的角度并相对于光栅波矢量旋转晶体来计算能量耦合增益。假定两个入射光束的偏振为(普通,普通),(非凡,非凡),(普通,非凡)或(非凡,普通)。光束的波长假定为515nm。当两个光束都是普通光束时,最大耦合增益为4.8 / cm,而当两个光束为非寻常光束时,最大耦合增益为74.7 / cm。还显示出能量可以在普通(非常规)光束和非常规(常规)光束之间传递。在这种情况下,最大能量耦合增益为9.2 / cm。

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