Choi Jeong Ryeol, Ju Sanghyun
Department of Physics, Kyonggi University, Yeongtong-gu, Suwon, Gyeonggi-do 16227, Korea.
Nanomaterials (Basel). 2018 Dec 24;9(1):20. doi: 10.3390/nano9010020.
The mechanical and quantum properties of a nanomechanical resonator can be improved by connecting it to a superconducting resonator in a way that the resonator exhibits new phenomena that are possibly available to novel quantum technologies. The quantum characteristics of a nanomechanical resonator coupled to a superconducting resonator have been investigated on the basis of rigorous quantum solutions of the combined system. The solutions of the Schrödinger equation for the coupled system have been derived using the unitary transformation approach. The analytic formula of the wave functions has been obtained by applying the adiabatic condition for time evolution of the coupling parameter. The behavior of the quantum wave functions has been analyzed for several different values of parameters. The probability densities depicted in the plane of the two resonator coordinates are distorted and rotated due to the coupling between the resonators. In addition, we have shown that there are squeezing effects in the wave packet along one of the two resonator coordinates or along both the two depending on the magnitude of several parameters, such as mass, inductance, and angular frequencies.
通过将纳米机械谐振器与超导谐振器相连,使其呈现出可能适用于新型量子技术的新现象,从而改善其机械和量子特性。基于组合系统的严格量子解,研究了与超导谐振器耦合的纳米机械谐振器的量子特性。使用幺正变换方法推导了耦合系统的薛定谔方程的解。通过应用耦合参数时间演化的绝热条件,得到了波函数的解析公式。分析了几个不同参数值下量子波函数的行为。由于谐振器之间的耦合,在两个谐振器坐标平面中描绘的概率密度发生了扭曲和旋转。此外,我们还表明,根据质量、电感和角频率等几个参数的大小,在波包中沿着两个谐振器坐标之一或沿着两个坐标都存在压缩效应。