Leiden University, Kamerlingh Onnes Laboratory, Leiden, 2300 RA, The Netherlands.
Sci Rep. 2017 Feb 10;7:42239. doi: 10.1038/srep42239.
We calculate the change of the properties of a resonator, when coupled to a semiclassical spin by means of the magnetic field. Starting with the Lagrangian of the complete system, we provide an analytical expression for the linear response function for the motion in the case of a mechanical resonator and the current for the case of an electromagnetic resonator, thereby considering the influence of the resonator on the spin and vice versa. This analysis shows that the resonance frequency and effective dissipation factor can change significantly due to the relaxation times of the spin. We first derive this for a system consisting of a spin and mechanical resonator and thereafter apply the same calculations to an electromagnetic resonator. Moreover, the applicability of the method is generalized to a resonator coupled to two-level systems and more, providing a key to understand some of the problems of two-level systems in quantum devices.
我们通过磁场计算了与半经典自旋耦合的谐振器的性质变化。从完整系统的拉格朗日量出发,我们为机械谐振器的运动和电磁谐振器的电流的线性响应函数提供了一个解析表达式,从而考虑了谐振器对自旋的影响以及反之亦然。该分析表明,由于自旋的弛豫时间,共振频率和有效耗散因子可能会发生显著变化。我们首先推导了由自旋和机械谐振器组成的系统,然后将相同的计算应用于电磁谐振器。此外,该方法的适用性被推广到与两个或更多能级系统耦合的谐振器,为理解量子器件中两个能级系统的一些问题提供了关键。