论文标题
DICKE模型中的可切换选择性交互
Switchable selective interactions in a Dicke Model with Driven Biased term
论文作者
论文摘要
在这项工作中,我们提出了一种在具有偏差术语的DICKE模型中研究可控的Qubit谐振器相互作用的方法。频谱的非线性可以由Qubit-resonator相互作用引起,在这种可控的相互作用中起着重要作用。为了深入了解非线性的机制,我们对哈密顿人进行了统一的转变。结果表明,转化的哈密顿量的非线性取决于量子谐振器耦合强度。根据频率调制方法详细讨论了有效的哈密顿人的一般形式。可以通过调整调制参数来打开和关闭动力学演化。通过利用这种可控的相互作用,我们讨论了迪克国家的创建和迪克状态的任意叠加。我们还考虑了大量量子数限制的能级的非线性。在热力学限制中,KERR类型的非线性是从“镁”谐波耦合中诱导的,并且可以在“镁”场景下研究“镁” Fock状态的选择性制备。
In this work, we propose a method to investigate controllable qubit-resonator interactions in a Dicke model with driven biased term. The nonlinearity of spectrum, which can be induced by qubit-resonator interactions, plays an important role in such controllable interactions. To gain insight into mechanism of the nonlinearity, we perform a unitary transformation to the Hamiltonian. The results show that the nonlinearity of the transformed Hamiltonian depends on the qubit-resonator coupling strength. The general forms of the effective Hamiltonians are discussed in detail based on the frequency modulation approach. The dynamical evolution can be switched on and off by adjusting the modulation parameters. By utilizing such controllable interactions, we discuss the creation of Dicke states and arbitrary superposition of Dicke states. We also consider the nonlinearity of energy level for the limit of large qubit numbers. In the thermodynamics limit, the kerr type nonlinearity is induced from "magnon"-resonator coupling, and the selective preparation of "magnon" Fock states can be studied under "magnon" scenario.