activity
20192026
most citedRealization of a minimal Kitaev chain in coupled quantum dots

301 citations · 760 across the 26 of their papers we have counts for

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26 papers · 1 filter

cond-mat.mes-hall2026

Majorana parity qubit in coupled minimal Kitaev chains

Francesco Zatelli, Bart Roovers, Nick van Loo +11

Majorana zero modes provide a route to fault-tolerant qubits by encoding information non-locally in fermion parity. Their sensitivity to noise is expected to decrease exponentially…

cond-mat.mes-hall2025

Single-shot parity readout of a minimal Kitaev chain

Nick van Loo, Francesco Zatelli, Gorm O. Steffensen +12

Protecting qubits from noise is essential for building reliable quantum computers. Topological qubits offer a route to this goal by encoding quantum information non-locally, using…

cond-mat.mes-hall2025

Enhanced and modulable induced superconducting gap and effective Landé g-factor in Pb-InSb hybrid devices

Guoan Li, Xiaofan Shi, Ziwei Dou +21

The hybrid system of a conventional superconductor (SC) on a semiconductor (SM) nanowire with strong spin-orbit coupling (SOC) represents a promising platform for achieving topolog…

cond-mat.mes-hall2025

Probing Majorana localization of a phase-controlled three-site Kitaev chain with an additional quantum dot

Alberto Bordin, Florian J. Bennebroek Evertsz', Bart Roovers +11

Few-site implementations of the Kitaev chain offer a minimal platform to study the emergence and stability of Majorana bound states. Here, we realize two- and three-site chains in…

cond-mat.mes-hall2025

Few-Mode and Anisotropic Quantum Transport in InSb Nanoribbons Using an All-van der Waals Material-Based Gate

Colin J. Riggert, Pim Lueb, Tyler Littmann +5

High-quality electrostatic gating is a fundamental ingredient for successful semiconducting device physics, and a key element of realizing clean quantum transport. Inspired by the…

cond-mat.mes-hall2024

Cross-Platform Autonomous Control of Minimal Kitaev Chains

David van Driel, Rouven Koch, Vincent P. M. Sietses +21

Contemporary quantum devices are reaching new limits in size and complexity, allowing for the experimental exploration of emergent quantum modes. However, this increased complexity…