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All-optical logic gates based on cross phase modulation effect in a phase-shifted grating

机译:相移光栅中基于交叉相位调制效应的全光逻辑门

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In this paper, we perform a theoretical study of the all-optical logic gates based on the techniques of cross phase modulation (XPM) in a phase-shifted grating. Here the pumps are used to control the switching of a weak continuous wave (cw). In order to understand the transferring process of the information from the pump light to the cw light, we first study the switching characteristic of the device. Then, by changing the combination between two pumps, in a fiber grating with zero phase shift we have realized NOT, AND, and NAND gates, and in a phase-shifted grating with the phase shift pi, the other various logic operations can be realized such as NAND gates and OR gates; when selecting Delta phi = 3/2 pi, we can realize XOR gates and XNOR gates. Thus the change of the phase shift of the phase-shifted grating will yield various logic gates. (C) 2016 Optical Society of America
机译:在本文中,我们基于相移光栅中的交叉相位调制(XPM)技术对全光逻辑门进行了理论研究。此处,泵用于控制弱连续波(cw)的切换。为了理解信息从泵浦光向连续光的传递过程,我们首先研究了器件的开关特性。然后,通过改变两个泵之间的组合,在具有零相移的光纤光栅中,我们已经实现了非,与,与非门,并且在具有相移pi的相移光栅中,可以实现其他各种逻辑运算如“与非”门和“或”门;选择德尔塔披= 3/2 PI时,就可以实现异或门和异或非门。因此,相移光栅的相移的变化将产生各种逻辑门。 (C)2016美国眼镜学会

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