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Phase dependence of optical bistability and multistability in graphene nanostructure under external magnetic field

机译:外部磁场下石墨烯纳米结构中双稳态和多稳定性的相位依赖性

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摘要

In this letter, the phase control of optical bistability and multistability in a ring cavity doped with a four-level graphene nanostructure in infrared regions are discussed. Due to the unusual dispersion relation in graphene nanoribbons, electrons can lead to an exceptionally strong optical response in the infrared and terahertz regions. We show that by adjusting the intensities and relative phase of infrared laser fields, the threshold intensity and hysteresis loop can be manipulated efficiently. The effect of the electronic cooperation parameter, which is directly proportional to the electron concentration and the length of the graphene sample, is also discussed. Our proposed model may be useful for the next generation of all-optical systems and information processing in nanoscale devices.
机译:在这封信中,讨论了在红外区域中掺有四能级石墨烯纳米结构的环形腔体中的光学双稳性和多稳定性的相位控制。由于石墨烯纳米带中不寻常的色散关系,电子在红外和太赫兹区域会导致异常强的光学响应。我们表明,通过调节红外激光场的强度和相对相位,可以有效地控制阈值强度和磁滞回线。还讨论了电子协作参数的影响,该参数与电子浓度和石墨烯样品的长度成正比。我们提出的模型可能对下一代全光学系统和纳米级设备中的信息处理有用。

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