Expansion of an ultracold Rydberg plasma
arXiv:1711.09797 · doi:10.1103/PhysRevA.97.043401
Abstract
We report a systematic experimental and numerical study of the expansion of ultra-cold Rydberg plasmas. Specifically, we have measured the asymptotic expansion velocities, , of ultra-cold neutral plasmas (UNPs) which evolve from cold, dense samples of Rydberg rubidium atoms using ion time-of-flight spectroscopy. From this, we have obtained values for the effective initial plasma electron temperature, (where is the Rb ion mass), as a function of the original Rydberg atom density and binding energy, . We have also simulated numerically the interaction of UNPs with a large reservoir of Rydberg atoms to obtain data to compare with our experimental results. We find that for Rydberg atom densities in the range cm, for states with principal quantum number , is insensitive to the initial ionization mechanism which seeds the plasma. In addition, the quantity is strongly correlated with the fraction of atoms which ionize, and is in the range . On the other hand, plasmas from Rydberg samples with evolve with no significant additional ionization of the remaining atoms once a threshold number of ions has been established. The dominant interaction between the plasma electrons and the Rydberg atoms is one in which the atoms are deexcited, a heating process for electrons that competes with adiabatic cooling to establish an equilibrium where is determined by their Coulomb coupling parameter, .
14 pages, 7 figures. Supercedes arXiv:1702.01463
References in corpus (10)
- Quasiclassical calculations of BBR-induced depopulation rates and effective lifetimes of Rydberg nS, nP and nD alkali-metal atoms with n < 80
- Evolution from a molecular Rydberg gas to an ultracold plasma in a seeded supersonic expansion of NO
- Spontaneous avalanche ionization of a strongly blockaded Rydberg gas
- Using Three-Body Recombination to Extract Electron Temperatures of Ultracold Plasmas
- Electron Temperature Evolution in Expanding Ultracold Neutral Plasmas
- Ionization of Rydberg atoms by blackbody radiation
- Ultracold Plasma Expansion in a Magnetic Field
- Observation of a strong coupling effect on electron-ion collisions in ultracold plasmas
- Simulations of prompt many-body ionization in a frozen Rydberg gas
- Density dependence of the Ionization Avalanche in ultracold Rydberg gases
Cited by in corpus (4)
- Expansion Dynamics of Cold Non-Neutral Plasma
- Formation of ultracold ion pairs through long-range Rydberg molecules
- Dissipative dynamics of atomic and molecular Rydberg gases: Avalanche to ultracold plasma states of strong coupling
- Heating and cooling of electrons in an ultracold neutral plasma using Rydberg atoms