论文标题
在蓝色的非温型腔体光学系统中的高阶特殊点
Higher-order exceptional point in a blue-detuned non-Hermitian cavity optomechanical system
论文作者
论文摘要
非热式系统中的高阶特殊点(EP)由于对敏感增强和独特的拓扑特征的优势而引起了极大的兴趣。但是,这种EP的实现仍然是挑战的,因为与二阶EP(EP2)相比,量子系统中通常需要更多的微调参数。在这里,我们在蓝色边带机制中提出了一个非热三模式的光机电系统,用于预测三阶EP(EP3)。通过推导拟议系统的伪血症条件,必须需要一个具有损失的腔,另一个则需要一个带有增益的腔。然后,我们表明当机械谐振器(MR)中性,损失或增益时,可以观察到EP3或EP2。对于中性MR,我们发现可以通过在参数空间中的调谐系统参数来预测两个退化或两个非分类EP3,而当系统参数源自EP3S时,可以观察到四个非分类EP2,这与先前的Red-detundetundet-netundetuntened-netundet-netundeNET-detunteNEDENEDENEDINGILICALICAL SYSTEM衍生。对于增益(损失)MR,我们发现只能通过调整增强的耦合强度来预测两个退化EP3或EP2。我们的建议提供了一种预测高阶EPS或多个EP2的潜在方法,并使用蓝色dected的非热机电系统研究了EPS周围的多模量子量。
Higher-order exceptional points (EPs) in non-Hermitian systems have attracted great interest due to their advantages in sensitive enhancement and distinct topological features. However, realization of such EPs is still challenged because more fine-tuning parameters is generically required in quantum systems, compared to the second-order EP (EP2). Here, we propose a non-Hermitian three-mode optomechanical system in the blue-sideband regime for predicting the third-order EP (EP3). By deriving the pseudo-Hermitian condition for the proposed system, one cavity with loss and the other one with gain must be required. Then we show EP3 or EP2 can be observed when the mechanical resonator (MR) is neutral, loss or gain. For the neutral MR, we find both two degenerate or two non-degenerate EP3s can be predicted by tuning system parameters in the parameter space, while four non-degenerate EP2s can be observed when the system parameters derivate from EP3s, which is distinguished from the previous study in the red-detuned optomechanical system. For the gain (loss) MR, we find only two degenerate EP3s or EP2s can be predicted by tuning enhanced coupling strength. Our proposal provides a potential way to predict higher-order EPs or multiple EP2s and study multimode quantum squeezing around EPs using the blue-detuned non-Hermitian optomechanical systems.