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Dynamics of ONF-Based Three-QD Nanophotonic AND Gates at Finite Temperatures

机译:有限温度下基于ONF的三量子点纳米光子与门的动力学

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In this paper, we have simulated the dynamic behavior of two-input nanophotonic AND gates at finite temperatures (0 K ≤ T ≤ 35 K). To the best of our knowledge, this is the first instance of reporting such numerical studies. It is shown that these nanophotonic switching gates can have two nontrivial OFF states ( OFFA and OFFB) at finite temperate, unlike that at T = 0 K with only one nontrivial OFF state (OFFA). It is also shown that the output level occupation probabilities for these AND gates in either OFF states increase with temperature. On the contrary, when these AND gates are in the ON state, the output level occupation probabilities decrease with temperature. Hence, the instantaneous and the effective ON/OFF ratios (for either OFF state) both decrease with temperature. Simulations show that the temperature dependence of the ON/OFFB|eff, ratio in the low-temperature region where ON/OFFA|eff <; ON/OFFB|eff, is much stronger than that for the ON/OFFB|eff, ratio.
机译:在本文中,我们模拟了有限温度(0 K≤T≤35 K)下双输入纳米光子AND门的动态行为。据我们所知,这是首次报告此类数值研究。结果表明,这些纳米光子开关门在有限温度下可以具有两个非平常的关断状态(OFF A 和OFF B ),这与T = 0 K时只有一个平凡的状态OFF状态(OFF A )。还表明,这些“与”门在任一“ OFF”状态下的输出电平占用概率均随温度而增加。相反,当这些与门处于导通状态时,输出电平的占用概率随温度而降低。因此,瞬时和有效ON / OFF比率(对于任一OFF状态)均随温度降低。仿真表明,在ON / OFF A | <的低温区域,ON / OFF B | eff 比的温度依赖性。 sub> eff <; ON / OFF B | eff ,比ON / OFF B | eff 的比率要强得多。

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