A Superradiant Maser with Nitrogen-Vacancy Center Spins
arXiv:2105.12350
Abstract
Recent experiments have demonstrated Rabi-oscillations, superradiant pulses and stimulated emission from negatively-charged nitrogen-vacancy () center spins in microwave resonators. These phenomena witness the kind of collective and strong coupling which has been prerequisite for observation of superradiant lasing in the optical frequency regime. In this article, we investigate the possibility to employ coherence, present in both the collective spin ensemble and the microwave field, to achieve a superradiant maser. Our calculations show that a superradiant maser with a linewidth below millihertz can be achieved with moderate kilohertz incoherent pumping of over spins kept at low temperature. We show that the superradiant masing prevails in the presence of inhomogeneous broadening, and we present numerical and analytical studies of the dependence of the phenomenon on the various physical parameters.
18 pages, 10 figures
References in corpus (5)
- Strong Coupling of a Spin Ensemble to a Superconducting Resonator
- Protecting a Spin Ensemble against Decoherence in the Strong-Coupling Regime of Cavity QED
- Steady-state spin synchronization through the collective motion of trapped ions
- Theory of the crossover from lasing to steady state superradiance
- Amplified emission and lasing in a plasmonic nano-laser with many three-level molecules