论文标题
复杂分散和特征阻抗对超导波动波动感参数放大器的增益的影响
The effect of complex dispersion and characteristic impedance on the gain of superconducting traveling-wave kinetic inductance parametric amplifiers
论文作者
论文摘要
超导波动参数放大器是一种有前途的放大技术,适用于亚毫米级天文学的应用。它们的实现依赖于使用Floquet传输线,以创建强大的停止带以抑制不希望的谐波。在设计过程中,振幅方程用于预测其增益,操作频率和带宽。但是,通常的振幅方程未考虑分散和特征阻抗的真实和虚构部分,这是由于使用浮线线而导致的,而妨碍了可靠的设计。为了克服这一限制,我们使用了多个尺度方法来包括这些效果。我们证明,复杂的分散和特征阻抗对传输线的增益具有明显的影响,甚至在某些情况下完全抑制了传输线的增益。因此,这里提出的方程式可以指导更好地设计和理解这种放大器的性能。
Superconducting traveling-wave parametric amplifiers are a promising amplification technology suitable for applications in submillimeter astronomy. Their implementation relies on the use of Floquet transmission lines in order to create strong stopbands to suppress undesired harmonics. In the design process, amplitude equations are used to predict their gain, operation frequency, and bandwidth. However, usual amplitude equations do not take into account the real and imaginary parts of the dispersion and characteristic impedance that results from the use of Floquet lines, hindering reliable design. In order to overcome this limitation, we have used the multiple-scales method to include those effects. We demonstrate that complex dispersion and characteristic impedance have a stark effect on the transmission line's gain, even suppressing it completely in certain cases. The equations presented here can, thus, guide to a better design and understanding of the properties of this kind of amplifiers.