量子纠缠
量子退相干
物理
量子力学
量子点
量子存储器
量子不和谐
量子
量子网络
作者
Abdel‐Baset A. Mohamed,Fahad Aljuaydi,Atta Ur Rahman,Abdel‐Baset A. Mohamed
标识
DOI:10.1002/qute.202500432
摘要
Abstract This study investigates the dynamics of two‐qubit quantum‐memory‐assisted (QMA) entropic uncertainty relation and entanglement in a system comprising two strongly coupled semiconductor pair quantum dots (SPQD). The influences of detuning, tunnel coupling, dipole‐dipole interaction, and intrinsic decoherence on the system's behavior are explored. Without decoherence, periodic fluctuations in entropic uncertainty driven by the inter‐dot coupling parameter , are observed, while entanglement remains negligible, reflecting the separable nature of the initial two‐qubit states. Introducing decoherence significantly alters these dynamics, with even low decoherence rates, an increased uncertainty and accelerated loss of coherence are observed when coupled with strong dipole interactions. The findings elucidate the complex interplay between entropic uncertainty and entanglement under intrinsic decoherence, highlighting challenges in maintaining quantum coherence. This work enhances the understanding of quantum dynamics in strongly coupled qubit systems and opens the doors for research to mitigate decoherence effects and improve quantum information processing.
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