Efficiency optimization in quantum computing: balancing thermodynamics and computational performance

被引:0
作者
Tomasz Śmierzchalski
Zakaria Mzaouali
Sebastian Deffner
Bartłomiej Gardas
机构
[1] Institute of Theoretical and Applied Informatics,Department of Physics
[2] Polish Academy of Sciences,undefined
[3] University of Maryland,undefined
[4] Baltimore County,undefined
[5] National Quantum Laboratory,undefined
来源
Scientific Reports | / 14卷
关键词
Quantum thermodynamics; Quantum annealing; Quantum computation;
D O I
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中图分类号
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摘要
We investigate the computational efficiency and thermodynamic cost of the D-Wave quantum annealer under reverse-annealing with and without pausing. Our demonstration on the D-Wave 2000Q annealer shows that the combination of reverse-annealing and pausing leads to improved computational efficiency while minimizing the thermodynamic cost compared to reverse-annealing alone. Moreover, we find that the magnetic field has a positive impact on the performance of the quantum annealer during reverse-annealing but becomes detrimental when pausing is involved. Our results, which are reproducible, provide strategies for optimizing the performance and energy consumption of quantum annealing systems employing reverse-annealing protocols.
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