most citedOptimality Condition for the Petz Map

6 citations · 6 across the 3 of their papers we have counts for

collaborators

11 papers

quant-ph2026

Enhancing Entanglement Purification with Shared Randomness

Allen Zang, Bikun Li, Xinan Chen +4

Entanglement purification protocols (EPPs) are essential for improving entanglement fidelity to support fault-tolerant distributed quantum information processing. Practical entangl…

quant-ph20266 cited

Optimality Condition for the Petz Map

Bikun Li, Zhaoyou Wang, Guo Zheng +2

In quantum error correction, the Petz map serves as a perfect recovery map when the Knill-Laflamme conditions are satisfied. Notably, while perfect recovery is generally infeasible…

quant-ph2026

Realistic Simulation of Quantum Repeater with Encoding and Classical Error Correction

Sagar Patange, Caitao Zhan, Bikun Li +4

Quantum repeaters are essential for scalable long-distance quantum networking. As quantum information processing moves toward fault-tolerant and error-corrected operations, it beco…

quant-ph2026

InterQnet: A Heterogeneous Full-Stack Approach to Co-designing Scalable Quantum Networks

Joaquin Chung, Daniel Dilley, Ely Eastman +21

Quantum communications have progressed significantly, moving from a theoretical concept to small-scale experiments to recent metropolitan-scale demonstrations. As the technology ma…

quant-ph2026

Passive Environment-Assisted Quantum Communication

Evelyn Voss, Bikun Li, Zhaoyou Wang +1

As quantum information systems mature, efficient and coherent transfer of quantum information through noisy channels becomes increasingly important. We examine how passive environm…

quant-ph2025

Constant-Overhead Fault-Tolerant Bell-Pair Distillation using High-Rate Codes

J. Pablo Bonilla Ataides, Hengyun Zhou, Qian Xu +4

We present a fault-tolerant Bell-pair distillation scheme achieving constant overhead through high-rate quantum low-density parity-check (qLDPC) codes. Our approach maintains a con…