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Introducing Enhanced Transport to the Effective Hamiltonian Approach via Random Matrices with a Pair of Connecting States

机译:通过带有一对连接状态的随机矩阵引入增强的运输到有效的Hamiltonian方法

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Direct transport processes play an important role in wireless communications where an ideal setup uses microwave fields to establish reliable communication channels between transmitter and receiver. But it is inherent to the problem that one cannot fully control the environment. While the influence of a complex scattering surrounding can be very well described using Random Matrix Theory it is not always obvious how to combine this universal approach with concrete communication channels. In this work we present an approach introducing an enhanced path between two antennas to the Hamilton operator to account for a prototypical problem. In order to be able to describe the stability of wireless chip-to-chip communication, we analyze the transport properties and predict the stability of the transmission under increasing importance of the environment.
机译:直接传输过程在无线通信中发挥重要作用,其中理想的设置使用微波场来建立发射器和接收器之间的可靠通信信道。但是,一个问题是无法完全控制环境的问题。虽然使用随机矩阵理论可以很好地描述复杂散射围绕的影响,但如何将这种通用方法与具体通信通道结合起来并不总是显而易见的。在这项工作中,我们提出了一种在汉密尔顿操作员之间引入增强路径的方法,以解释原型问题。为了能够描述无线芯片到芯片通信的稳定性,我们分析了运输特性并预测了在越来越重要的环境中的传输稳定性。

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