论文标题
量子瞬态热振荡器中的量子瞬态热传输
Quantum transient heat transport in the hyper-parametric oscillator
论文作者
论文摘要
我们探索在非线性骨体系统中的非平衡量子热传输,这是由于两个腔之间的两光球跳,该非kerr型相互作用受高参数振荡的影响。我们通过构建非线性哈密顿量的$ SU(2)$代数来分析热力学响应,并预测该系统表现出负激发模式。因此,这种特定形式的相互作用可以通过在颗粒数增加时诱导基态过渡来使系统冷却,即使相互作用强度很小。在系统和浴室之间存在对称耦合的情况下,我们以数值的方式证明了热电流的过渡,并在冷却阶段显示长的松弛时间。我们与通过跨相调制引起的相互作用的kerr型玻色 - 哈伯德形式进行了比较,该形式不会表现出任何此类过渡。我们进一步计算了在不同温度下两个浴缸存在下的非平衡热电流,并观察到非Kerr型相互作用的冷却效果持续存在。我们的发现可能有助于使用系统的相互作用来诱导冷却来操纵量子状态。
We explore nonequilibrium quantum heat transport in nonlinear bosonic systems in the presence of a non-Kerr-type interaction governed by hyper-parametric oscillation due to two-photon hopping between the two cavities. We estimate the thermodynamic response analytically by constructing the $su(2)$ algebra of the nonlinear Hamiltonian and predict that the system exhibits a negative excitation mode. Consequently, this specific form of interaction enables the cooling of the system by inducing a ground state transition when the number of particles increases, even though the interaction strength is small. We demonstrate a transition of the heat current numerically in the presence of symmetric coupling between the system and bath and show long relaxation times in the cooling phase. We compare with the Kerr-type Bose-Hubbard form of interaction induced via cross-phase modulation, which does not exhibit any such transition. We further compute the nonequilibrium heat current in the presence of two baths at different temperatures and observe that the cooling effect for the non-Kerr-type interaction persists. Our findings may help in the manipulation of quantum states using the system's interactions to induce cooling.