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Entanglement in ladder plus-Y double quantum dot structure via entropy

机译:通过熵矩阵加上梯子 - y双量子点结构

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Quantum entropy in a ladder-plus-Y double quantum dot system was calculated. The controlling parameters that are examined are four coherent optical fields, three tunneling components, and incoherent optical pumping. This work differs from others by the inclusion of a wetting layer (WL) and the calculation of momenta for each transition. The results showed that the entropy depends on the difference between the carrier occupations in the states of these two quantum dots (QDs). It is also shown that the probe optical field reduces the entropy, while the pumping field increases it. Turning off the main tunneling component removes the entropy, while high WL-QD momentum increases the entropy. Taking the same value of momentum for all transitions (the case of other works) underestimates the entropy. (C) 2019 Optical Society of America
机译:计算梯子加y双量子点系统中的量子熵。 检查的控制参数是四个相干光场,三个隧道组件,以及不连贯的光学泵送。 通过包含润湿层(WL)和每个过渡的调度,该工作与其他工作不同。 结果表明,熵取决于这两个量子点(QDS)中的载波职业之间的差异。 还示出了探头光场减少了熵,而泵场增加。 关闭主隧道部件消除熵,而高WL-QD动量增加熵。 采取相同的动量值为所有转换(其他作品的情况)低估了熵。 (c)2019年光学学会

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