arXiv · 2605.06297
Macroscopic entanglement between two magnon modes via two-tone driving of a superconducting qubit
Abstract
The cavity-mediated coupling between magnons in an yttrium-iron-garnet (YIG) sphere and a superconducting qubit has recently been demonstrated as a new platform for preparing macroscopic quantum states. Here, based on this system, we propose to entangle two magnon modes in two YIG spheres by driving the qubit with a two-tone field and by appropriately choosing the frequencies and strengths of the two driving fields. We show that strong entanglement can be achieved with fully feasible parameters. We further provide a detection scheme for experimentally verifying the entanglement. Our results indicate that macroscopic entanglement between two magnon modes in two millimeter-sized YIG spheres, involving more than $10^{18}$ spins, can be realized using currently available parameters, which finds promising applications in fundamental studies, such as macroscopic quantum mechanics and the test of unconventional decoherence theories.
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Rong-Can Yang, Gang Liu, Gen Li, Jie Li. 2026-05-07. Macroscopic entanglement between two magnon modes via two-tone driving of a superconducting qubit. https://arxiv.org/abs/2605.06297
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