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Nonequilibrium thermodynamics of erasure with superconducting flux logic

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arxiv 1909.13828 v1 pith:KRI7LTFQ submitted 2019-09-30 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords logicalsuperconductingerasurefluxlogicsystemworkacquire
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We implement a thermal-fluctuation driven logical bit reset on a superconducting flux logic cell. We show that the logical state of the system can be continuously monitored with only a small perturbation to the thermally activated dynamics at 500 mK. We use the trajectory information to derive a single-shot estimate of the work performed on the system per logical cycle. We acquire a sample of $10^5$ erasure trajectories per protocol, and show that the work histograms agree with both microscopic theory and global fluctuation theorems. The results demonstrate how to design and diagnose complex, high-speed, and thermodynamically efficient computing using superconducting technology.

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