Iyen C, Liman M S, Emem-Obong S J, Yahya W A, Onate C A, Falaye B J
Department of Physics, Federal University of Lafia, Lafia, Nigeria.
Department of Pure and Applied Physics, Federal University Wukari, Wukari, Nigeria.
Sci Rep. 2024 Oct 18;14(1):24495. doi: 10.1038/s41598-024-76007-7.
The inherent association between real quantum systems and their surrounding environment invariably results in decoherence, leading to the loss of entanglement. This diminution in entanglement coincides with a decline in the fidelity of transmitted information using the entangled quantum resource. This study scrutinizes the impact of the squeezed generalized amplitude damping (SGAD) channel on quantum Fisher information (QFI) parameters. The SGAD channel model, a versatile framework, is also employed to simulate other dissipative channels, including amplitude damping (AD) and generalized amplitude damping (GAD). Kraus operators facilitate the modeling of noisy channels. The results reveal that, within the SGAD channel, the QFI remains impervious to the squeezing variables (r and ). In the GAD channel, undergoes enhancement to a constant value with an upswing in temperature (T), while the parameter in the GAD channel, , akin to the SGAD channel, surges around T = 2 before complete loss ensues. Concerning the AD channel, the component of the QFI initially experiences decoherence with an augmentation in the AD noise parameter ( ). Subsequently, it is restored to its initial value with a further escalation in . Conversely, the component of the QFI in the AD channel experiences decoherence with an elevation in the AD noise parameter ( ).
真实量子系统与其周围环境之间的内在关联总是会导致退相干,进而导致纠缠的丧失。这种纠缠的减少与使用纠缠量子资源传输信息的保真度下降相吻合。本研究仔细审查了压缩广义振幅阻尼(SGAD)信道对量子费舍尔信息(QFI)参数的影响。SGAD信道模型作为一个通用框架,也被用于模拟其他耗散信道,包括振幅阻尼(AD)和广义振幅阻尼(GAD)。克劳斯算子有助于对噪声信道进行建模。结果表明,在SGAD信道内,QFI对压缩变量(r和 )保持不敏感。在GAD信道中, 随着温度(T)的上升增强至一个恒定值,而GAD信道中的 参数,与SGAD信道类似,在T = 2左右激增,随后完全丧失。关于AD信道,QFI的 分量最初随着AD噪声参数( )的增加而经历退相干。随后,随着 的进一步升高,它恢复到其初始值。相反,AD信道中QFI的 分量随着AD噪声参数( )的升高而经历退相干。