论文标题

旋转猫在铁磁绝缘子中

Spin cat states in a ferromagnetic insulator

论文作者

Sharma, Sanchar, Bittencourt, Victor A. S. V., Karenowska, Alexy D., Kusminskiy, Silvia Viola

论文摘要

在宏观系统中产生非古典状态是一项漫长的挑战。在此任务背景下的一个有前途的平台是基于磁性介电的新型混合系统,尽管尚未观察到其中的非经典状态,但光子可以与磁激发相干地与磁激发相干。我们提出了一种生成磁化猫状态的方案,即使用微波炉中的宏观铁磁铁的常规设置,即两个不同的磁化方向的量子叠加。我们的方案使用椭圆形磁铁的基态,该磁体显示出类似于挤压真空的各向异性量子波动。通过单光子或微波腔状态的平均测量,磁化磁化强度崩溃了猫的状态。我们发现,一个由$ \ sim5 \ hbar $隔开的猫状态是可行的,并简要讨论可以实现它的潜在实验设置。

Generating non-classical states in macroscopic systems is a long standing challenge. A promising platform in the context of this quest are novel hybrid systems based on magnetic dielectrics, where photons can couple strongly and coherently to magnetic excitations, although a non-classical state therein is yet to be observed. We propose a scheme to generate a magnetization cat state, i.e. a quantum superposition of two distinct magnetization directions, using a conventional setup of a macroscopic ferromagnet in a microwave cavity. Our scheme uses the ground state of an ellipsoid shaped magnet, which displays anisotropic quantum fluctuations akin to a squeezed vacuum. The magnetization collapses to a cat state by either a single-photon or a parity measurement of the microwave cavity state. We find that a cat state with two components separated by $\sim5\hbar$ is feasible and briefly discuss potential experimental setups that can achieve it.

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