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On-Chip Microwave Quantum Hall Circulator

机译:片上微波量子霍尔循环器

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Circulators are nonreciprocal circuit elements that are integral to technologies including radar systems, microwave communication transceivers, and the readout of quantum information devices. Their nonreciprocity arises from the interference of microwaves over the centimeter scale of the signal wavelength, in the presence of bulky magnetic media that breaks time-reversal symmetry. Here, we realize a completely passive on-chip microwave circulator with size 1 / 1000 th the wavelength by exploiting the chiral, “slow-light” response of a two-dimensional electron gas in the quantum Hall regime. For an integrated GaAs device with 330 μ m diameter and about 1-GHz center frequency, a nonreciprocity of 25?dB is observed over a 50-MHz bandwidth. Furthermore, the nonreciprocity can be dynamically tuned by varying the voltage at the port, an aspect that may enable reconfigurable passive routing of microwave signals on chip.
机译:循环器是不可逆的电路元件,是包括雷达系统,微波通信收发器和量子信息设备的读出器在内的技术所不可或缺的。它们的不可逆性是由于存在体积大的磁性介质而破坏了时间反转对称性时,微波在信号波长的厘米范围内产生的干扰。在这里,我们通过利用量子霍尔状态下二维电子气的手性,“慢光”响应,实现了波长为波长的十分之一/ 1000的完全无源的片上微波循环器。对于具有330μm直径和大约1 GHz中心频率的集成式GaAs器件,在50 MHz带宽上观察到25µdB的不可逆性。此外,可以通过改变端口上的电压来动态地调整不可逆性,这是可以实现片上微波信号可重构的无源路由的一个方面。

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