论文标题

由INP HEMT非线性产生的微波两模式挤压状态的量子相关性

Quantum Correlation of Microwave Two-mode Squeezed State Generated by Nonlinearity of InP HEMT

论文作者

Salmanogli, Ahmad

论文摘要

这项研究显着集中于使用量子理论的低温INP HEMT高频回路分析,以了解晶体管非线性如何影响电路中产生的模式的量子相关性。首先,得出了电路的总哈密顿量,并使用Heisenberg-Langevin方程检查了贡献的运动的动态方程。使用非线性哈密顿量,某些组件附着在INP HEMT的固有内部电路上,以充分解决电路特性。由于非线性效应,附着的组件是出现的。结果,理论计算表明,电路中产生的状态混合在一起,没有产生纯状态。因此,修改的电路会生成两种模式挤压热状态,这意味着可以专注于计算高斯量子不和谐以评估量子相关性。还发现,非线性因子(作为电路中的非线性组件)可以强烈影响量子不和谐的挤压热状态。最后,作为要点,得出的结论是,尽管可以通过工程化非线性组件来增强模式之间的量子相关性。但是,量子不和谐大于统一,纠缠的微波光子似乎是一项艰巨的任务,因为INP HEMT在4.2 k处运行。

This study significantly concentrates on cryogenic InP HEMT high-frequency circuit analysis using quantum theory to find how the transistor nonlinearity can affect the quantum correlation of the modes generated in the circuit. Firstly, the total Hamiltonian of the circuit is derived, and the dynamic equation of the motion contributed is examined using the Heisenberg-Langevin equation. Using the nonlinear Hamiltonian, some components are attached to the intrinsic internal circuit of InP HEMT to fully address the circuit characteristics. The components attached are arisen due to the nonlinearity effects. As a result, the theoretical calculations show that the states generated in the circuit are mixed, and no pure state is produced. Accordingly, the modified circuit generates the two-mode squeezed thermal state, which means one can focus on calculating the Gaussian quantum discord to evaluate quantum correlation. It is also found that the nonlinearity factors (addressed as the nonlinear components in the circuit) can intensely influence the squeezed thermal state by which the quantum discord is changed. Finally, as the primary point, it is concluded that although it is possible to enhance the quantum correlation between modes by engineering the nonlinear components; however, quantum discord greater than unity, entangled microwave photons, seems a challenging task since InP HEMT operates at 4.2 K.

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