20 results for “distributed quantum computing”
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This paper proposes an economic model to optimize the trade-off between entanglement distribution latency and decoherence time in distributed quantum computing.
Seongmin Kim, Abhinav Rijal, Yuri Alexeev, Nora Bauer +4 more
This paper introduces DQAOA-GPT, a hybrid framework that integrates DQAOA and GPT-based quantum circuit generation for solving combinatorial optimization problems, reducing computational cost and main…
The paper introduces covert quantum computing, a framework to ensure privacy in multi-tenant quantum cloud environments, and finds that while local crosstalk is limited, long-range coupling effects cr…
This paper provides a comprehensive, system-level taxonomy for designing quantum-resistant network architectures, moving beyond simple protocol substitutions to address key distribution and management…
The paper introduces QADR, a novel hybrid quantum-classical framework that efficiently trains variational quantum circuits by localizing entanglement reduction, thereby overcoming the exponential memo…
Manik Kumar Sangala, Robin Naira, Akhirul Islam, Sudip Biswas +1 more
This survey provides a comprehensive review of the security challenges, threats, and mitigation strategies associated with the rapid advancement of quantum computing.
This paper presents protocols for computing a linear combination over a noiseless quantum many-to-one network with more general linear transformations and lower communication cost.
The paper proposes a two-dimensional coordinate system to map the co-evolution of cryptographic resilience and computational capability, identifying the 'Quantum Gap' as the primary systemic risk requ…
Thomas Badts, Tim Boyle, Claudio Carvalho, Antonio Córcoles +24 more
The paper presents the Quantum Resource Management Interface (QRMI) as a standardized, vendor-agnostic middleware layer for integrating quantum resources into high-performance computing environments,…
The paper proposes a layered, modular network architecture combining Quantum Key Distribution (QKD) and Post-Quantum Cryptography (PQC) to achieve scalable, end-to-end post-quantum security in multi-h…
This paper introduces Distributed Quorum Signature (DQS), a new primitive built from ordinary digital signatures and approval broadcasts, enabling constant-size quorum signatures in distributed system…
The paper introduces MAGIQ, a novel, quantum-resistant framework designed to securely define and enforce communication and access-control policies within multi-agent AI systems.
This paper proposes a method to explore the design space of quantum-classical applications using a formalization of an architectural style, enabling dynamic selection of the most suitable configuratio…
This paper simplifies the definition of qudit flow, a model of quantum computation, and improves its complexity to match qubit flows.
The paper establishes a quantum Fisher information (QFI) duality for distributed quantum sensors, showing that achieving Heisenberg-limited precision for a target direction inherently guarantees priva…
This paper proposes QCOEM, a quantum cloud orchestration framework using evolutionary algorithms for multi-objective optimization of quantum task scheduling, achieving zero rescheduling and 30% higher…
Fengxia Liu, Zixian Gong, Kun Tian, Yi Zhang +2 more
The paper introduces a unified framework for Quantum Fully Homomorphic Encryption (QFHE) that achieves exponential efficiency improvements by integrating a novel modular arithmetic program (MAP) tailo…
Stephan Krenn, Omid Mir, Thomas Lorünser, Sebastian Ramacher +1 more
The paper proposes a provably secure path validation protocol for large-scale Quantum Key Distribution (QKD) networks that allows receivers to verify network compliance without revealing sensitive top…
The paper proposes a practical, non-interactive scheme for publicly verifying quantum computations delegated from a classical user to a quantum prover, by relaxing the requirement to time-delayed veri…