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MAGNETIC-FREE NON-RECIPROCAL DEVICES EXHIBITING NON-RECIPROCITY THROUGH ANGULAR MOMENTUM BIASING

机译:通过角动量偏斜显示无偏心的无磁无偏心设备

摘要

A non-reciprocal device incorporating metamaterials which exhibit non-reciprocity through angular momentum biasing. The metamaterial, such as a ring resonator, is angular-momentum biased. This is achieved by applying a suitable mechanical or spatio-temporal modulation to resonant inclusions of the metamaterial, thereby producing strong non-reciprocity. In this manner, non-reciprocity can be produced without requiring the use of large and bulky magnets to produce a static magnetic field. The metamaterials of the present invention can be realized by semiconducting and/or metallic materials which are widely used in integrated circuit technology, and therefore, contrary to magneto-optical materials, can be easily integrated into the non-reciprocal devices and large microwave or optical systems. The metamaterials of the present invention can be compact at various frequencies due to the enhanced wave-matter interaction in the constituent resonant inclusions. Additionally, by using the metamaterials of the present invention, the power consumed in the biasing network is drastically reduced.
机译:一种非交互装置,其包含通过角动量偏置而表现出非交互性的超材料。诸如环形谐振器的超材料是角动量偏置的。这是通过将适当的机械或时空调制应用于超材料的共振夹杂物来实现的,从而产生强的不可逆性。以这种方式,可以产生不可逆性,而无需使用大而笨重的磁体来产生静磁场。本发明的超材料可以通过在集成电路技术中广泛使用的半导体和/或金属材料来实现,因此,与磁光材料相反,可以容易地将其集成到不可逆器件中,并且可以使用大的微波或光学材料。系统。由于在组成共振夹杂物中增强的波-质相互作用,本发明的超材料可以在各种频率下致密。另外,通过使用本发明的超材料,大大减少了偏置网络中消耗的功率。

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