累计引用
- 近两年引用
- 未提供
- 观测日期
- 2026-07-28
- 推导版本
- qec-impact-v1
Paper · 2023 · Journal of the Indian Institute of Science 103, 497–512
Akshaya Jayashankar and Prabha Mandayam
Research record
当前迁移记录只包含书目信息和技术关联,摘要将在获得可靠来源后补充。
Impact snapshots
累计引用
累计引用
Crossref 与 OpenAlex 的口径和更新节奏不同,因此分别披露;这里不计算统一影响力分、热门分或质量分。
Representative roles
Provides an independent modern review of exact and noise-adapted correctability together with the fault-tolerance threshold framework.
Sections 2–4 and 6; QEC conditions, recovery and fault-tolerance reviewReviews how QEC code and recovery design depend on the physical noise channel and model assumptions.
Sections 2–3 and 5; quantum channels, noise-adapted recovery and fault-tolerance assumptionsConnected entities
码和解码器设计不能脱离噪声模型;需区分 code-capacity、phenomenological 与 circuit-level。
Provides an independent modern review of how noise-channel assumptions determine code and recovery design.
选择稳定子、CSS、subsystem、bosonic 或更一般的算符代数量子纠错形式。
Provides an independent modern review of the mathematical encoding-noise-recovery formalism.
构造 commuting generators、逻辑 X/Z 与错误等价类,是数学定义、测量线路和简并解码的共同主干。
Places the stabilizer framework within a modern review of standard and noise-adapted QEC.
对代码投影 P 与错误集合 {E_a},精确可纠正性要求 P E_a† E_b P = c_ab P,使错误不泄露逻辑态信息。
Places exact correctability conditions in a modern recovery framework.
用 logical gadgets、extended rectangles、良性/恶性 fault sets 和 level reduction 表达受保护操作的可组合正确性。
Provides an independent modern account of fault-tolerance assumptions and thresholds.
以量子存储为主线系统梳理可纠正条件、稳定子与 subsystem 码、拓扑存储、解码和容错阈值的基础综述。
Provides an independent modern review spanning correctability, recovery and fault tolerance.