Distributed Quantum Computation with Minimum Circuit Execution Time over Quantum Networks
Ranjani G Sundaram, Himanshu Gupta, C.R. Ramakrishnan

TL;DR
This paper addresses the challenge of distributing quantum circuits across networks to minimize execution time, proposing algorithms for qubit allocation and entanglement generation that outperform previous methods significantly.
Contribution
It introduces a two-step approach with approximation algorithms for qubit mapping and entanglement scheduling, optimizing distributed quantum computation performance.
Findings
Algorithms reduce execution time by up to 95%
Effective qubit allocation minimizes latency
Proven performance guarantees under certain conditions
Abstract
Present quantum computers are constrained by limited qubit capacity and restricted physical connectivity, leading to challenges in large-scale quantum computations. Distributing quantum computations across a network of quantum computers is a promising way to circumvent these challenges and facilitate large quantum computations. However, distributed quantum computations require entanglements (to execute remote gates) which can incur significant generation latency and, thus, lead to decoherence of qubits. In this work, we consider the problem of distributing quantum circuits across a quantum network to minimize the execution time. The problem entails mapping the circuit qubits to network memories, including within each computer since limited connectivity within computers can affect the circuit execution time. We provide two-step solutions for the above problem: In the first step, we…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsQuantum Computing Algorithms and Architecture · Quantum Information and Cryptography · Quantum Mechanics and Applications
