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Tunable Mpemba Effect in a Prethermal Many-Body Spin Network

arXiv:2607.21669v1 Announce Type: new Abstract: Relaxation in an interacting system is determined not only by its initial distance from equilibrium, but also by...

Quantum Editorial Team
July 27, 2026
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This article has been aggregated from arXiv quant-ph. You can read the original publication at https://arxiv.org/abs/2607.21669.
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Tunable Mpemba Effect in a Prethermal Many-Body Spin Network

Source: Originally published on arXiv quant-ph on July 27, 2026.

arXiv:2607.21669v1 Announce Type: new Abstract: Relaxation in an interacting system is determined not only by its initial distance from equilibrium, but also by the relaxation modes populated by the initial state. Here we experimentally observe and control the Mpemba effect, in which a state farther from equilibrium overtakes one initially closer, in an extended, disordered $^{13}$C nuclear-spin network in diamond. Field cycling allows us to prepare distinct spatial polarization profiles by independently controlling hyperpolarization and defect-mediated relaxation. We then track their evolution under Floquet driving, which stabilizes a long-lived prethermal regime. We observe reproducible Mpemba crossings and tune the crossing time over several orders of magnitude, from late-time thermal...


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