光力学
物理
边带
量子退相干
叠加原理
非线性系统
谐振器
哈密顿量(控制论)
量子力学
联轴节(管道)
光子
消散
量子
光学
材料科学
数学优化
数学
微波食品加热
冶金
作者
Bradley Hauer,Joshua Combes,John Teufel
标识
DOI:10.1103/physrevlett.130.213604
摘要
The ability to prepare a macroscopic mechanical resonator into a quantum superposition state is an outstanding goal of cavity optomechanics. Here, we propose a technique to generate cat states of motion using the intrinsic nonlinearity of a dispersive optomechanical interaction. By applying a bichromatic drive to an optomechanical cavity, our protocol enhances the inherent second-order processes of the system, inducing the requisite two-phonon dissipation. We show that this nonlinear sideband cooling technique can dissipatively engineer a mechanical resonator into a cat state, which we verify using the full Hamiltonian and an adiabatically reduced model. While the fidelity of the cat state is maximized in the single-photon, strong-coupling regime, we demonstrate that Wigner negativity persists even for weak coupling. Finally, we show that our cat state generation protocol is robust to significant thermal decoherence of the mechanical mode, indicating that such a procedure may be feasible for near-term experimental systems.
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