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Quantum statistics and squeezing for a microwave-driven interacting magnon system

机译:微波驱动互动氧化镁系统的量子统计和挤压

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Theoretical studies are reported for the statistical properties of a microwave-driven interacting magnon system. Both the magnetic dipole-dipole and the exchange interactions are included and the theory is developed for the case of parallel pumping allowing for the inclusion of the nonlinear processes due to the four-magnon interactions. The method of second quantization is used to transform the total Hamiltonian from spin operators to boson creation and annihilation operators. By using the coherent magnon state representation we have studied the magnon occupation number and the statistical behavior of the system. In particular, it is shown that the nonlinearities introduced by the parallel pumping field and the four-magnon interactions lead to non-classical quantum statistical properties of the system, such as magnon squeezing. Also control of the collapse-and-revival phenomena for the time evolution of the average magnon number is demonstrated by varying the parallel pumping amplitude and the four-magnon coupling.
机译:据报道了微波驱动的相互作用肉质系统的统计性质的理论研究。包括磁性偶极偶极子和交换相互作用,并且该理论是为平行泵送的情况开发的,允许由于四镁相互作用包括非线性过程。第二量化的方法用于将来自旋转运算符的总汉密尔顿人转换为玻色子创作和湮灭运营商。通过使用相干的Magnon状态表示,我们研究了MAGNON占用号码和系统的统计行为。特别地,示出了由平行泵送场引入的非线性和四氧元相互作用导致系统的非经典量子统计特性,例如Magnon挤压。还通过改变平行泵送幅度和四氧化物耦合来证明对平均氧元数的时间演变的崩溃和复兴现象的控制。

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