collaborators

10 papers

quant-ph2026

Noise-robust 1-copy distillation protocol for all distillable Bell-diagonal qutrits

Tobias C. Sutter, Christopher Popp, Beatrix C. Hiesmayr

Entanglement distillation is the process of converting noisy entangled states into maximally entangled pure states via local operations and classical communication. A long-standing…

quant-ph2026

Group-Theoretic Perspective on the PPT and Realignment Criteria in the Magic Simplex for Bipartite Qutrits

Tobias C. Sutter, Christopher Popp, Beatrix C. Hiesmayr

Entanglement is a key feature in many quantum technologies, including secure communication protocols and quantum computing. However, detecting it in mixed quantum states remains a…

quant-ph2026

Resource State Distillation via Stabilizer Channels

Christopher Popp, Tobias C. Sutter, Beatrix C. Hiesmayr

Quantum technologies rely on high-quality resource states, such as maximally entangled or private states, which are indispensable for quantum communication and cryptography. In pra…

gr-qc2026

Looking through the Kerr disk

Maciej Maliborski, Tobias C. Sutter

We study null geodesics that connect the two asymptotically flat regions of the maximally extended Kerr spacetime. These vortical geodesics traverse both horizons and pass through…

quant-ph2025

A Novel Stabilizer-based Entanglement Distillation Protocol for Qudits

Christopher Popp, Tobias C. Sutter, Beatrix C. Hiesmayr

Entanglement distillation, the process of converting weakly entangled states into maximally entangled ones using Local Operations and Classical Communication (LOCC), is pivotal for…

quant-ph2025

Computation of the Smooth Max-Mutual Information via Semidefinite Programming

Christopher Popp, Tobias C. Sutter, Beatrix C. Hiesmayr

We present an iterative algorithm based on semidefinite programming (SDP) for computing the quantum smooth max-mutual information of bipartite quant…