论文标题
三级量子冰箱的统一权衡优化
Unified trade-off optimization of a three-level quantum refrigerator
论文作者
论文摘要
我们使用权衡目标函数$ω$函数研究了三级量子冰箱的最佳性能,这代表了能量益处与热设备的能量损失之间的折衷。首先,我们通过采用两参数优化方案来优化冰箱的性能,并表明获得的性能系数(COP)与某些经典冰箱模型的系列系列扩展(COP)的第一个两部分相匹配。然后,在高温极限中,相对于一个参数进行优化,同时约束另一个参数,我们在COP上获得了强度和弱(中间)物质耦合条件的COP上的下限和上限。在强大的物质耦合方案中,COP上获得的边界与某些经典冰箱模型已知的边界完全匹配。对于弱物质领域耦合,我们在冰箱的COP上得出了一些新的界限,这些界限超出了范围内的范围,该范围被用于强的物质实线耦合所获得的范围。最后,在可以最大化冷却功率和$ω$函数的参数方案中,我们比较了最大$ω$功能的量子冰箱的冷却能力和最大冷却能力。
We study the optimal performance of a three-level quantum refrigerator using a trade-off objective function, $Ω$ function, which represents a compromise between the energy benefits and the energy losses of a thermal device. First, we optimize the performance of our refrigerator by employing a two-parameter optimization scheme and show that the first two-terms in the series expansion of the obtained coefficient of performance (COP) match with those of some classical models of refrigerator. Then, in the high-temperature limit, optimizing with respect to one parameter while constraining the other one, we obtain the lower and upper bounds on the COP for both strong as well as weak (intermediate) matter-field coupling conditions. In the strong matter-field coupling regime, the obtained bounds on the COP exactly match with the bounds already known for some models of classical refrigerators. Further for weak matter-field coupling, we derive some new bounds on the the COP of the refrigerator which lie beyond the range covered by bounds obtained for strong matter-field coupling. Finally, in the parameter regime where both cooling power and $Ω$ function can be maximized, we compare the cooling power of the quantum refrigerator at maximum $Ω$ function with the maximum cooling power.