English

Optimizing magnetic coupling in lumped element superconducting resonators for molecular spin qubits

Quantum Physics 2026-01-27 v2 Mesoscale and Nanoscale Physics Superconductivity

Abstract

We engineer lumped-element superconducting resonators that maximize magnetic coupling to molecular spin qubits, achieving record single-spin couplings up to 100100 kHz and collective couplings exceeding 1010 MHz. The resonators interact with PTMr organic free radicals, model spin systems with S=1/2S=1/2 and a quasi-isotropic g2g \simeq 2, dispersed in polymer matrices. The highest collective spin-photon coupling strengths are attained with resonators having large inductors, which therefore interact with most spins in the molecular ensemble. By contrast, the coupling of each individual spin G1G_{1} is maximized in resonators having a minimum size inductor, made of a single wire. The same platform has been used to study spin relaxation and spin coherent dynamics in the dispersive regime, when spins are energetically detuned from the resonator. We find evidences for the Purcell effect, i.e. the photon induced relaxation of those spins that are most strongly coupled to the circuit. The rate of this process gives access to the distribution of single spin photon couplings in a given device. For resonators with a 5050 nm wide constriction at the inductor center, single maximum G1G_{1} values reach 100\sim 100 kHz. Pumping the spins with strong pulses fed through an independent transmission line induces coherent Rabi oscillations. The spin excitation then proceeds via either direct resonant processes induced by the main pulse frequency or, in the case of square-shaped pulses, via the excitation of the cavity by sideband frequency components. The latter process measures the cavity mode hybridization with the spins and can be eliminated by using Gaussian shaped pulses. These results establish a scalable route toward integrated molecular-spin quantum processors.

Keywords

Cite

@article{arxiv.2511.00857,
  title  = {Optimizing magnetic coupling in lumped element superconducting resonators for molecular spin qubits},
  author = {Marcos Rubín-Osanz and David Rodriguez and Ignacio Gimeno and Wenzel Kersten and Nerea González-Prato and María C. Pallarés and Sebastián Roca-Jerat and Marina C. de Ory and Marta Mas-Torrent and J. Alejandro de Sousa and Lorenzo Tesi and Daniel Granados and Jaume Veciana and David Zueco and Anabel Lostao and Jörg Schmiedmayer and Imma Ratera and Joris van Slageren and Núria Crivillers and Alicia Gomez and Fernando Luis},
  journal= {arXiv preprint arXiv:2511.00857},
  year   = {2026}
}

Comments

18 pages, 17 figures

R2 v1 2026-07-01T07:17:56.367Z