The asymmetric transmission realized by cascading an acousto-optic device and a whispering gallery mode microcavity

None Lv Yu-Xi, None Wang Chen, None Duan Tian-Qi, None Zhao Tong, None Chang Peng-Fa, None Wang An-Bang
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Abstract

In this paper, An asymmetric transmission scheme is proposed by cascading an acousto-optic device and a coupled whispering gallery mode (WGM) microsphere cavity, and it is demonstrated by theory and experiment. With the acousto-optic interaction in a fiber, the vector modes of the fundamental core mode could be converted to the different vector modes of a cladding (linear polarization -LP) mode, and because of the optical path difference between the cladding vector modes, the polarization of the cladding mode will be changed. The cladding mode could be converted back to the core fundamental mode by coupling with a WGM microcavity. By calculating the overlapping of the mode fields in the tapered fiber and the microcavity at the resonance wavelength, the coupling coefficients between different LP modes and WGM will be solved. And, the transmittivity and conversion coefficient of the two fiber modes, under the condition that when the polarization of the incident light does not coincide with the polarization orientation of the WGM, can be got. The transmission spectrum of the coupled WGM microcavity is calculated by using MATLAB program under eight states, including the states at different incident directions, different incident polarization of input and whether the acoustic wave is on or off. The results show that the conversion coefficient from the cladding modes to the core mode is completely different from that of the contrary process when the acoustic wave is working. And the forward and backward incident lights have completely different transmission characteristics, thus achieved the asymmetric transmission. The transmittances of forward incidence and reverse incidence at different polarizations are also studied, both of them change periodically over the polarization angle, and their phase difference is equal to the polarization change caused by acousto-optic interaction in the fiber. In the experiment, a two-stage tapered fiber is used to realize the working of acousto-optic interaction and the coupling of whispering gallery mode at the same time. By controlling the working states of the system, the same 8 states as in the calculation had been studied experimentally. In the results, due to the polarization-selection effect of the WGM, the light energy incident from the opposite directions will show different transmission characteristics. While the forward transmittance reaches the maximum value (about 0.505), the reverse transmittance reaches about the minimum value (0.010), and the transmission isolation reaches about 17 dB. The transmittance in two directions was measured at different incident polarization angles, the transmission isolation was analyzed, and the polarization change of cladding mode in the fiber was verified to be about 80°. The measured results coincide with the calculations of the developed theory well. At last, the shortcomings and optimization methods of the scheme are discussed. The asymmetric transmission scheme in this paper inherits the advantages of rapid response and good tuning of acousto-optic device, and has an all-fiber structure, which has important application potential in optical switch and isolator.
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通过声光器件与低语通道模微腔级联实现非对称传输
本文提出了声光器件与耦合低语通道(WGM)微球腔级联的非对称传输方案,并进行了理论和实验验证。在光纤中,随着声光相互作用,基芯模式的矢量模式可以转换为包层(线性偏振-LP)模式的不同矢量模式,并且由于包层矢量模式之间的光程差异,将改变包层模式的偏振。通过与WGM微腔的耦合,可以将包层模式转换回核心基模。通过计算锥形光纤与微腔在共振波长处的模场重叠,求解不同LP模式与WGM之间的耦合系数。在入射光的偏振方向与WGM的偏振方向不重合的情况下,可以得到两种光纤模式的透光率和转换系数。利用MATLAB程序计算了耦合WGM微腔在不同入射方向下的状态、输入的不同入射偏振态以及声波开、关等8种状态下的透射谱。结果表明,声波工作时包层模式到核心模式的转换系数与相反过程的转换系数完全不同。而前后入射光具有完全不同的传输特性,从而实现了不对称传输。研究了不同偏振方向下正向入射和反向入射的透射率随偏振角的周期性变化,其相位差等于光纤中声光相互作用引起的偏振变化。在实验中,采用两级锥形光纤同时实现声光相互作用的工作和窃窃廊模式的耦合。通过控制系统的工作状态,实验研究了与计算相同的8种状态。结果表明,由于WGM的偏振选择效应,从相反方向入射的光能会表现出不同的透射特性。正向透过率达到最大值(约0.505),反向透过率达到最小值(约0.010),传输隔离达到约17db。在不同的入射偏振角下测量了两个方向的透射率,分析了传输隔离,验证了光纤包层模式的偏振变化约为80°。实测结果与理论计算结果吻合较好。最后讨论了该方案存在的不足和优化方法。本文提出的非对称传输方案继承了声光器件响应快、调谐好等优点,具有全光纤结构,在光开关和光隔离器等方面具有重要的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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