论文标题
在内在的反应下,超紧密耦合的谐波振荡器的虚拟激发和量子相关性
Virtual excitations and quantum correlations in ultra-strongly coupled harmonic oscillators under intrinsic decoherence
论文作者
论文摘要
我们研究耦合谐波振荡器的内在破坏。米尔本主方程得到了准确求解,并研究了虚拟基态激发的动力学。然后研究了量子相关和虚拟激发的相互作用。以下是我们主要发现的摘要。 (i)所有三个数量的阻尼振荡概况都是相同的。 (ii)超长耦合与巨大的各向异性值相结合导致纠缠和转向的重新出现。 (iii)为了维持纠缠和转向,需要虚拟激发。 (iv)量子相关性在量子同步方案中得到扩增。 (v)超强耦合会导致固有的固定固定。
We study the intrinsic decoherence of coupled harmonic oscillators. The Milburn master equation is solved exactly, and the dynamics of virtual ground state excitations are investigated. The interaction of quantum correlations and virtual excitation was then studied. The following is a summary of our major findings. (i) The damped oscillatory profile of all three quantities is the same. (ii) Ultra-strong coupling combined with huge anisotropy values results in the reemergence of entanglement and steering. (iii) To sustain entanglement and steering, virtual excitations are required. (iv) The quantum correlations are amplified in the quantum synchronous regime. (v) Ultra-strong couplings cause inherent decoherence to be avoided.