Scaling Quantum Systems (SQS)

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The Scaling Quantum Systems (SQS) research area enhances the operational readiness and robustness of quantum systems. The primary methods employed are miniaturisation, parallelisation and scaling of system complexity. By applying foundational concepts from the research area Quantum Concepts (QC), we aim to extend these principles to larger, more intricate systems involving many entangled quantum objects within more compact, scalable architectures.

Key Focus Areas:

  • Develop compact and integrated light sources, essential for numerous Cluster activities.
  • Utilize cutting-edge technology to create transportable sensors.
  • Leverage physics and engineering synergies to scale quantum systems, such as ion traps, enabling the development of next-generation, ion-based fault-tolerant quantum computer architectures. 

Scaling Quantum Systems is dedicated to pioneering advancements that will transform quantum systems with larger, scalable, and more robust frameworks. This contributes to the broader goal of facilitating practical applications and advancements in quantum technology.

Research Topics and related Topical Groups

SQS1. NOISE IN QUANTUM SYSTEMS
SQS3. COMPACT AND INTEGRATED PHOTONICS FOR QUANTUM TECHNOLOGIES
SQS4. TRAPFAB: ADVANCED ION TRAP AND NEUTRAL ATOM TRAP TECHNOLOGY
  • TG TrapFab
    Leader: Julia-Aileen Coenders, Alexander Kassner