A three-dimensional multimode lumped-element resonator for collective spin manipulation and dispersive readout
arXiv:2601.05476 · doi:10.1063/5.0321656
Abstract
We report a three-dimensional lumped-element multimode microwave resonator that enables homogeneous collective manipulation and dispersive readout of a macroscopic spin ensemble. By exploiting geometric symmetry, two antisymmetric modes with strongly suppressed cross-talk are engineered to spatially overlap and couple to the same ensemble at distinct frequencies. Using negatively charged nitrogen-vacancy centers in diamond at 28 mK, we observe collective strong coupling with a coupling strength of 5.0 MHz and demonstrate non-destructive dispersive readout via a detuned mode. The compact design, tunable coupling, and high field homogeneity make this resonator a versatile device for hybrid spin-photon systems and multimode solid-state quantum technologies.
References in corpus (20)
- Cavity quantum electrodynamics for superconducting electrical circuits: an architecture for quantum computation
- Observation of high coherence in Josephson junction qubits measured in a three-dimensional circuit QED architecture
- Quantum information processing with circuit quantum electrodynamics
- Strong Coupling of a Spin Ensemble to a Superconducting Resonator
- Cavity QED with magnetically coupled collective spin states
- Beyond Strong Coupling in a Massively Multimode Cavity
- Electron spin ensemble strongly coupled to a three-dimensional microwave cavity
- A coaxial line architecture for integrating and scaling 3D cQED systems
- High contrast qubit interactions using multimode cavity QED
- Fast, low-power manipulation of spin ensembles in superconducting microresonators
- Seamless high-Q microwave cavities for multimode circuit QED
- Microwave multimode memory with an Er:YSiO spin ensemble
- 3D Cavity quantum electrodynamics with a rare-earth spin ensemble
- Normal-mode splitting in the coupled system of hybridized nuclear magnons and microwave photons
- Coherent Rabi dynamics of a superradiant spin ensemble in a microwave cavity
- Collective Strong Coupling with Homogeneous Rabi Frequencies using a 3D Lumped Element Microwave Resonator
- Strong Coupling Between P1 Diamond Impurity Centres and 3D Lumped Photonic Microwave Cavity
- Towards achieving strong coupling in 3D-cavity with solid state spin resonance
- Loop-gap Microwave Resonator for Hybrid Quantum Systems
- Dispersive Readout of Room Temperature Spin Qubits