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Performance Evaluation and Acceleration of the QTensor Quantum Circuit Simulator on GPUs

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arxiv 2204.06045 v1 pith:EMAOSBHZ submitted 2022-04-12 quant-ph cs.MS

classification quant-phcs.MS
keywords circuitsperformancegpusmaxcutnumpyoptimalqaoaqtensor
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

This work studies the porting and optimization of the tensor network simulator QTensor on GPUs, with the ultimate goal of simulating quantum circuits efficiently at scale on large GPU supercomputers. We implement NumPy, PyTorch, and CuPy backends and benchmark the codes to find the optimal allocation of tensor simulations to either a CPU or a GPU. We also present a dynamic mixed backend to achieve optimal performance. To demonstrate the performance, we simulate QAOA circuits for computing the MaxCut energy expectation. Our method achieves $176\times$ speedup on a GPU over the NumPy baseline on a CPU for the benchmarked QAOA circuits to solve MaxCut problem on a 3-regular graph of size 30 with depth $p=4$.

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Cited by 1 Pith paper

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  1. LC-Implicit-QAOA: Active-Workspace-Capped Exact Objective-and-Gradient Evaluation for Training over Bounded QUBO Light Cones

    cs.ET 2026-08 accept novelty 6.0 of 10

    LC-Implicit-QAOA computes exact QUBO-QAOA objectives and shared gradients within a declared workspace budget by batching light-cone-local simulations with planner-selected checkpoints, verified against an independent ...

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