论文标题
电路量子声学学中的量子与经典制度
Quantum versus Classical Regime in Circuit Quantum Acoustodynamics
论文作者
论文摘要
我们通过实验研究了一个电路量子声学系统,该系统由超导性人工原子组成,并耦合到二维表面声波谐振器和一维微波传输线。通过在稀释冰箱的基础温度下观察真空狂犬病分裂,可以证实人工原子与声波谐振器之间的强耦合。我们表明,微波传输线中微波光子的传播可以由声波谐振器中的一些声子控制。此外,我们证明了温度对狂犬分裂的测量和温度诱发的温度的影响。我们发现,狂犬分裂的两峰频谱结构成为几个峰的光谱结构,并且随着环境温度$ t $的升高而逐渐消失。围绕交叉温度$ t_ {c} $观察到量子到古典的过渡,该$ t_ {c} $是通过热波动能$ k_ {b} t $和耦合系统的特征能级间距确定的。实验结果与在不同有效温度下耦合系统的主方程的理论模拟非常吻合。
We experimentally study a circuit quantum acoustodynamics system, which consists of a superconducting artificial atom, coupled to both a two-dimensional surface acoustic wave resonator and a one-dimensional microwave transmission line. The strong coupling between the artificial atom and the acoustic wave resonator is confirmed by the observation of the vacuum Rabi splitting at the base temperature of dilution refrigerator. We show that the propagation of microwave photons in the microwave transmission line can be controlled by a few phonons in the acoustic wave resonator. Furthermore, we demonstrate the temperature effect on the measurements of the Rabi splitting and temperature induced transitions from high excited dressed states. We find that the spectrum structure of two-peak for the Rabi splitting becomes into those of several peaks, and gradually disappears with the increase of the environmental temperature $T$. The quantum-to-classical transition is observed around the crossover temperature $T_{c}$, which is determined via the thermal fluctuation energy $k_{B}T$ and the characteristic energy level spacing of the coupled system. Experimental results agree well with the theoretical simulations via the master equation of the coupled system at different effective temperatures.