首页> 外文会议>Enabling Photonics Technologies for Defense, Security, and Aerospace Applications IV >Demonstration of an All-Optical Flip-Flop using a Lyot Filter and a Semiconductor Optical Amplifier Arrangement
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Demonstration of an All-Optical Flip-Flop using a Lyot Filter and a Semiconductor Optical Amplifier Arrangement

机译:使用Lyot滤波器和半导体光放大器装置的全光触发器的演示

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All-optical flip-flops provide many advantages over electrical circuitry, mainly the ability to operate at a faster speed and a cheaper cost. However, current models use a more than desirable amount of power and only operate with a single method for turning the flip-flop on and off, such as a single wavelength of light or a single current. The purpose of this work is to create an all-optical flip-flop that has multiple on and off wavelengths as well as a range of on and off currents at which it can successfully operate, in addition to using relatively less power. By creating a circuit consisting of a semiconductor optical amplifier, a lyot filter, and an isolator and testing the effects of various wavelengths and currents, we are able to create an optical flip-flop that operates at a power of only 1.002mW. Our signal turns off at 1554.955nm, 1558.955nm, and 1559.955nm or between 290-340mA, turns on at 1563.955nm, 1564.955nm, and 1568.955nm or between 80-120mA, and changes state between 170-210mA, while maintaining its state at all other wavelengths and currents. This all-optical flip-flop is a great improvement over other current models and, if put to practical use, could vastly increase the viability of these components.
机译:全光触发器比电路具有许多优势,主要是能够以更快的速度和更低的成本工作。但是,当前模型使用的功率超过了期望的数量,并且仅使用一种方法来打开和关闭触发器,例如使用单个波长的光或单个电流。这项工作的目的是创建一个全光触发器,该触发器具有多个导通和截止波长,以及一定范围的导通和截止电流,此外,它还使用相对较少的功率。通过创建一个由半导体光放大器,lyot滤波器和隔离器组成的电路,并测试各种波长和电流的影响,我们能够创建一个仅以1.002mW功率工作的光触发器。我们的信号在1554.955nm,1555.95nm和1559.955nm或290-340mA之间关闭,在1563.955nm,1564.955nm和1568.955nm或80-120mA之间打开,并在170-210mA之间改变状态,同时保持其状态在所有其他波长和电流下。这种全光触发器是对当前其他型号的极大改进,如果投入实际使用,可以大大提高这些组件的生存能力。

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