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首页> 外文期刊>Scientific reports. >Controllable microwave three-wave mixing via a single three-level superconducting quantum circuit
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Controllable microwave three-wave mixing via a single three-level superconducting quantum circuit

机译:通过单个三级超导量子电路可控微波三波混合

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Three-wave mixing in second-order nonlinear optical processes cannot occur in atomic systems due to the electric-dipole selection rules. In contrast, we demonstrate that second-order nonlinear processes can occur in a superconducting quantum circuit (i.e., a superconducting artificial atom) when the inversion symmetry of the potential energy is broken by simply changing the applied magnetic flux. In particular, we show that difference- and sum-frequencies (and second harmonics) can be generated in the microwave regime in a controllable manner by using a single three-level superconducting flux quantum circuit (SFQC). For our proposed parameters, the frequency tunability of this circuit can be achieved in the range of about 17?GHz for the sum-frequency generation, and around 42?GHz (or 26?GHz) for the difference-frequency generation. Our proposal provides a simple method to generate second-order nonlinear processes within current experimental parameters of SFQCs.
机译:由于电偶极选择规则,原子系统中不能发生二阶非线性光学过程的三波混合。相反,我们证明,当通过简单地改变所施加的磁通量,当势能的反转对称断裂时,二阶非线性过程可以发生在超导量子电路(即,超导人造原子)中。特别地,我们示出了通过使用单个三电平超导磁通量子电路(SFQC)以可控方式在微波制度中产生差异和和频率(和第二谐波)。对于我们所提出的参数,该电路的频率可调性可以在约17°GHz的范围内实现,并且对于差分频率产生约17°GHz的范围。我们的提案提供了一种简单的方法,可以在SFQCS的当前实验参数中生成二阶非线​​性过程。

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