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相关论文: Collective Strong Coupling with Homogeneous Rabi F…

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Obtaining a high Rabi oscillation frequency homogeneously across a spatially-extended population of nitrogen-vacancy (NV) center electronic spins in diamond is useful for efficient spin-state manipulation of the NV ensemble and in using NVs…

We investigate the microwave magnetic field confinement in several microwave 3D-cavities, using 3D finite-element analysis to determine the best design and achieve strong coupling between microwave resonant cavity photons and solid state…

量子物理 · 物理学 2016-11-03 J-M. Le Floch , N. Delhote , M. Aubourg , V. Madrangeas , D. Cros , S. Castelletto , M. E. Tobar

We report strong coupling between an ensemble of nitrogen-vacancy center electron spins in diamond and a superconducting microwave coplanar waveguide resonator. The characteristic scaling of the collective coupling strength with the square…

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…

量子物理 · 物理学 2026-01-12 Zhuo Chen , Wenhua Qin , Hanyu Ren , Ziyi Liu , Kae Nemoto , William John Munro , Yingqiu Mao , Johannes Majer

Quantum sensing using local defects in solid-state systems has gained significant attention over the past several years, with impressive results demonstrated both in Academia and in Industry. Specifically, employing large volume and high…

量子物理 · 物理学 2023-09-21 Yachel Ben-Shalom , Amir Hen , Nir Bar-Gill

We report the realization of a quantum circuit in which an ensemble of electronic spins is coupled to a frequency tunable superconducting resonator. The spins are Nitrogen-Vacancy centers in a diamond crystal. The achievement of strong…

We investigate coherent quantum control of a nitrogen vacancy (NV) center in diamond with microwave fields generated from a nanoscale magnet that is proximal to the NV center. Our results show remarkable coherent control with high contrast…

介观与纳米尺度物理 · 物理学 2024-07-22 Md Fahim F Chowdhury , Adi Jung , Lea La Spina , Ausrine Bartasyte , Samuel Margueron , Jayasimha Atulasimha

We report strong coupling between an ensemble of N impurity (P1) centres in diamond and microwave photons using a unique double post re-entrant cavity. The cavity is designed so that the magnetic component of the cavity field is spatially…

介观与纳米尺度物理 · 物理学 2015-05-18 Daniel L. Creedon , Jean-Michel Le Floch , Maxim Goryachev , Warrick G. Farr , Stefania Castelletto , Michael E. Tobar

We study the dynamics of a spin ensemble strongly coupled to a single-mode resonator driven by external pulses. When the mean frequency of the spin ensemble is in resonance with the cavity mode, damped Rabi oscillations are found between…

量子物理 · 物理学 2014-10-28 Dmitry O. Krimer , Stefan Putz , Johannes Majer , Stefan Rotter

We report the observation of strong coupling of a macroscopic ensemble of ~10^{16} Fe_8 molecular nanomagnets to the resonant mode of a microwave cavity. We use millimeter-wave spectroscopy to measure the splitting of the system's resonant…

介观与纳米尺度物理 · 物理学 2014-06-11 A. W. Eddins , C. C. Beedle , D. N. Hendrickson , Jonathan R. Friedman

Ultimate sensitivity for quantum magnetometry using nitrogen-vacancy (NV) centers in diamond is limited by number of NV centers and coherence time. Microwave irradiation with a high and homogeneous power density for a large detection volume…

We achieve the strong coupling regime between an ensemble of phosphorus donor spins in a highly enriched $^{28}$Si crystal and a 3D dielectric resonator. Spins were polarized beyond Boltzmann equilibrium using spin selective optical…

We experimentally demonstrate coherent Rabi oscillations of Nitrogen Vacancy (NV) centers by magnetoelastic waves. The coupling is consistent with dipolar stray field drive from spin-wave modes in a ferromagnetic film, and displays a…

介观与纳米尺度物理 · 物理学 2024-09-19 Adi Jung , Samuel Margueron , Ausrine Bartasyte , Sayeef Salahuddin

The homogeneity of the microwave magnetic field is essential in controlling a large volume of ensemble spins, for example, in the case of sensitive magnetometry with nitrogen-vacancy (NV) centers in diamond. This is particularly important…

量子物理 · 物理学 2026-05-14 Oleg Rezinkin , Marina Rezinkina , Takuya Kitamura , Rajan Paul , Fedor Jelezko

We study experimentally and theoretically a dense ensemble of negatively charged nitrogen-vacancy centers in diamond coupled to a high $Q$ superconducting coplanar waveguide cavity mode at low temperature. The nitrogen-vacancy centers are…

量子物理 · 物理学 2013-05-30 K. Sandner , H. Ritsch , R. Amsüss , Ch. Koller , T. Nöbauer , S. Putz , J. Schmiedmayer , J. Majer

We engineer lumped-element superconducting resonators that maximize magnetic coupling to molecular spin qubits, achieving record single-spin couplings up to $100$ kHz and collective couplings exceeding $10$ MHz. The resonators interact with…

Cavity quantum electrodynamics (C-QED) effects, such as Rabi splitting, Rabi oscillations and superradiance, have been demonstrated with nitrogen vacancy center spins in diamond in microwave resonators at cryogenic temperature. In this…

量子物理 · 物理学 2022-07-14 Yuan Zhang , Qilong Wu , Shi-Lei Su , Qing Lou , ChongXin Shan , Klaus Mølmer

We study the parametric interaction between a single Nitrogen-Vacancy electronic spin and a diamond mechanical resonator in which the spin is embedded. Coupling between spin and oscillator is achieved by crystal strain, which is generated…

介观与纳米尺度物理 · 物理学 2017-04-05 Jean Teissier , Arne Barfuss , Patrick Maletinsky

Hybrid quantum systems based on spin ensembles coupled to superconducting microwave cavities are promising candidates for robust experiments in cavity quantum electrodynamics (QED) and for future technologies employing quantum mechanical…

Strong coupling between atomic ensembles and high-quality optical cavities enables collective and nonlinear phenomena that are central to cavity quantum electrodynamics (cQED). Although many experiments have been performed on this topic,…

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