Squeezing of Collective Excitations in Spin Ensembles
arXiv:1207.6772 · doi:10.1103/PhysRevA.86.043831
Abstract
We analyse the possibility to create two-mode spin squeezed states of two separate spin ensembles by inverting the spins in one ensemble and allowing spin exchange between the ensembles via a near resonant cavity field. We investigate the dynamics of the system using a combination of numerical and analytic calculations, and we obtain squeezing for a wide range of parameters. We also investigate the transfer of the squeezing properties to the cavity field and to an output mode from the cavity. Finally, we investigate how the squeezing is affected by effects of inhomogeneities which would be present in solid state implementations of the spin ensembles.
10 pages, 10 figures
References in corpus (13)
- Strong atom-field coupling for Bose-Einstein condensates in an optical cavity on a chip
- Strong Coupling of a Spin Ensemble to a Superconducting Resonator
- Cavity QED with a Bose-Einstein condensate
- Hybrid quantum circuit with a superconducting qubit coupled to a spin ensemble
- Cavity Nonlinear Optics at Low Photon Numbers from Collective Atomic Motion
- Quantum computing with an electron spin ensemble
- Vacuum-Induced Transparency
- Spectroscopic properties of inhomogeneously broadened spin ensembles in a cavity
- Strong magnetic coupling of an inhomogeneous NV ensemble to a cavity
- Dissipative preparation of entangled states between two spatially separated nitrogen-vacancy centers
- Non-Gaussian states from continuous-wave Gaussian light sources
- Input-output Gaussian channels: theory and application
- Multipartite Entanglement Generation Assisted by Inhomogeneous Coupling
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