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SimulaQron - A simulator for developing quantum internet software

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arxiv 1712.08032 v2 pith:F5FG5RCB submitted 2017-12-21 quant-ph cs.NIcs.SE

SimulaQron - A simulator for developing quantum internet software

classification quant-ph cs.NIcs.SE
keywords quantuminternetlocalprocessorssoftwaredevelopmentsimulaqronapplication
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We introduce a simulator for a quantum internet with the specific goal to support software development. A quantum internet consists of local quantum processors, which are interconnected by quantum communication channels that enable the transmission of qubits between the different processors. While many simulators exist for local quantum processors, there is presently no simulator for a quantum internet tailored towards software development. Quantum internet protocols require both classical as well as quantum information to be exchanged between the network nodes, next to the execution of gates and measurements on a local quantum processor. This requires quantum internet software to integrate classical communication programming practises with novel quantum ones. SimulaQron is built to enable application development and explore software engineering practises for a quantum internet. SimulaQron can be run on one or more classical computers to simulate local quantum processors, which are transparently connected in the background to enable the transmission of qubits or the generation of entanglement between remote processors. Application software can access the simulated local quantum processors to execute local quantum instructions and measurements, but also to transmit qubits to remote nodes in the network. SimulaQron features a modular design that performs a distributed simulation based on any existing simulation of a quantum computer capable of integrating with Python. Programming libraries for Python and C are provided to facilitate application development.

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Cited by 2 Pith papers

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  1. Qoreo: Choreographic Programming for Quantum Distributed Systems

    quant-ph 2026-07 conditional novelty 7.0

    Qoreo introduces a linearly-typed choreographic language for distributed quantum protocols whose endpoint projection is proved sound, complete, and deadlock-free in Rocq.

  2. HybridQC: Hardware-Grounded Simulation of Tightly Integrated Hybrid Quantum-Classical Systems

    cs.PF 2026-07 conditional novelty 6.0

    HybridQC is a hardware-calibrated, topology-aware simulator that predicts hybrid quantum-classical system bottlenecks, finding that balanced 10x scaling yields only 2.19x-3.42x makespan improvement and that workload g...