受激拉曼绝热通道
量子退相干
绝热过程
稳健性(进化)
物理
量子
量子力学
振幅
人口
统计物理学
参数空间
绝热量子计算
量子计算机
几何相位
拉曼光谱
量子态
噪音(视频)
相位噪声
相空间
量子传感器
量子噪声
量子信息科学
量子信息
计算物理学
量子纠错
计算机科学
作者
Fangzhou Jin,Jinfeng Wang,Hui Zhou,Yunlan Ji
标识
DOI:10.1142/s0217979226501894
摘要
Stimulated Raman adiabatic passage (STIRAP) and its superadiabatic variant (sa-STIRAP) are pivotal techniques for high-fidelity quantum state transfer. However, STIRAP is inherently slow, while sa-STIRAP often requires additional, experimentally challenging couplings. Recent progress has shown that implementing these protocols in the dressed-state space can overcome these limitations by modulating the amplitude and phase of native driving fields, thereby enabling efficient population transfer without extra couplings. Nevertheless, the robustness of these dressed-state protocols against decoherence remains unclear. In this work, we investigate the decoherence resilience of both STIRAP and sa-STIRAP within the dressed-state framework. Through numerical simulations, we demonstrate that they exhibit significantly enhanced robustness to environmental noise compared to their standard three-level counterparts. Our results highlight the potential of dressed-state-based protocols for achieving robust, high-fidelity quantum state transfer in noisy environments.
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