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- W2075666745 abstract "We study the energy level structure of the Tavis-Cumming model applied to an ensemble of independent magnetic spins $s=1/2$ coupled to a variable number of photons. Rabi splittings are calculated and their distribution is analyzed as a functin of photon number $n_{rm max}$ and spin system size $N$. A sharp transition in the distribution of the Rabi frequency is found at $n_{rm max}approx N$. The width of the Rabi frequency spectrum diverges as $sqrt{N}$ at this point. For increased number of photons $n_{rm max}>N$, the Rabi frequencies converge to a value proportional to $sqrt{n_{rm max}}$. This behavior is interpreted as analogous to the classical spin resonance mechanism where the photon is treated as a classical field and one resonance peak is expected. We also present experimental data demonstrating cooperative, magnetic strong coupling between a spin system and photons, measured at room temperature. This points towards quantum computing implementation with magnetic spins, using cavity quantum-electrodynamics techniques." @default.
- W2075666745 created "2016-06-24" @default.
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- W2075666745 date "2010-07-14" @default.
- W2075666745 modified "2023-10-09" @default.
- W2075666745 title "Magnetic strong coupling in a spin-photon system and transition to classical regime" @default.
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- W2075666745 doi "https://doi.org/10.1103/physrevb.82.024413" @default.
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