论文标题
光学界面引起的强旋麦克农耦合
Optomechanical-interface-induced strong spin-magnon coupling
论文作者
论文摘要
强距离旋转磁通耦合对于固态量子信息处理和单个量子操作至关重要。在这里,我们提出了一种方法来实现在杂化光学腔体旋转磁通系统中实现强旋麦克农耦合的方法,在该系统中,光学机制系统由两个腔耦合到一个与常见的高频机械谐振器耦合在一起的型号,用作量子界面。通过消除机械模式,诱发了两个空腔的位置位置耦合和两种模式挤压。在挤压呈现中,自旋光子,镁光子和光子光子耦合强度被指数增大,因此由强烈耦合的两个腔模式强烈地产生了下支流和上支流极性(LBP和UBP)。利用LBP的临界特性,旋转值(镁)和LBP之间的耦合得到了极大的增强,而自旋量子置值(Magnon)和UBP之间的耦合被完全抑制。在色散状态下,虚拟LBP诱导了强和可调的旋转粘结耦合,从而使它们之间的量子态交换。我们的建议提供了一个有前途的平台,用于构建基于镁的混合动力系统,并使用光力机械接口实现固态量子信息处理。
Strong long-distance spin-magnon coupling is essential for solid-state quantum information processing and single qubit manipulation. Here, we propose an approach to realize strong spin-magnon coupling in a hybrid optomechanical cavity-spin-magnon system, where the optomechanical system, consisting of two cavities coupled to a common high-frequency mechanical resonator, acts as quantum interface. By eliminating the mechanical mode, a position-position coupling and two-mode squeezing of two cavities are induced. In the squeezing presentation, the spin-photon, magnon-photon and photon-photon coupling strengths are exponentially amplified, thus lower- and upper-branch polaritons (LBP and UBP) are generated by strongly coupled squeezed modes of two cavities. Utilizing the critical property of the LBP, the coupling between the spin qubit (magnon) and LBP is greatly enhanced, while the coupling between the spin qubit (magnon) and UBP is fully suppressed. In the dispersive regime, strong and tunable spin-magnon coupling is induced by the virtual LBP, allowing quantum state exchange between them. Our proposal provides a promising platform to construct magnon-based hybrid systems and realize solid-state quantum information processing with optomechanical interfaces.