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February 26, 2026ACM Transactions on Quantum Computing0 citationsOpen Access

STQS: A Unified System Architecture for Spatial Temporal Quantum Sensing

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AJAnastashia JebraeilliCLChenxu LiuKYKeyi Yin

Key Points

  • The aim is to develop a unified architecture for quantum sensing that incorporates critical quantum components.
  • Developed a gate-based framework for exploring quantum sensing schemes.
  • Simulated the impact of noise on various sensing states.
  • Introduced a distance-based metric for comparing sensing states with reference states.
  • Validated the architecture using IBM’s and IonQ’s quantum devices.
  • Established that STQS is the first system-level architecture for quantum sensing.
  • Demonstrated successful operations in quantum radar and dark matter detection.
  • Validated primary components on existing quantum hardware, proving near-term applicability.

Abstract

We present STQS, a unified system architecture for spatiotemporal quantum sensing that interlaces four key quantum components: sensing , memory , communication , and computation . By employing a comprehensive gate-based framework, we systemically explore the design space of quantum sensing schemes and probe the influence of noise at each state in a sensing workflow through simulation. We introduce a novel distance-based metric that compares reference states to sensing states and assigns a confidence level. We anticipate that the distance measure will serve as an intermediate step toward more advanced quantum signal processing techniques like quantum machine learning. To our knowledge, STQS is the first system-level framework to integrate quantum sensing within a coherent, unified architectural paradigm. STQS provides seamless avenues for unique state preparation, multi-user sensing requests, and addressing practical implementations. We demonstrate the versatility of STQS through evaluations of quantum radar and qubit-based dark matter detection. To highlight the near-term feasibility of our approach, we present results obtained from IBM’s Marrakesh and IonQ’s Forte devices, validating key STQS components on present day quantum hardware. We have made the simulation code and experimental data used in this work publicly available.

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Cite This Study

Jebraeilli et al. (2026) studied this question.

synapsesocial.com/papers/699fe40c95ddcd3a253e8491https://doi.org/10.1145/3795881
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