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Satyam Prakash

Publications and source records attributed to Satyam Prakash.

2 recordsLinked to original sources

Effect of dipole interactions on the properties of an expanding ultracold plasma: A study using quantum mechanical scattering theory

While generating ultracold plasma (UCP) by photoinization of laser-cooled atoms, only a small fraction of atoms are ionized, and the remaining neutrals interact with the electrons present therein. These interactions, in addition to the Coulomb interactions between ions and electrons, cause phenomena such as ionization of Rydberg atoms and three body recombination, all of which affect the overall behaviour of the ultracold plasma. We had earlier developed a quantum treatment to analyze these interactions and investigated the ionization of Rydberg atoms in Cesium, which showed good agreement with measured results. We now extend it to other atomic species to investigate Rydberg ionization, and other effects such as three-body recombination and a resulting additional `quantum pressure' which causes a faster expansion of the UCP. Our results successfully explain experimental observations which were hitherto deemed as `anomalies'.

physics.atom-ph

Ionization of Rydberg atoms embedded in Ultracold Plasma due to electron-atom interaction

When ultracold plasma is generated using photonization of laser cooled atoms, some atoms reach only upto Rydberg states. These in turn interact with the free electrons of the plasma and get ionized further. We study the interaction of electron-Rydberg atom using potential scattering technique in quantum mechanical domain and compute the associated cross sections for Cesium atoms, analytically. We notice a close agreement with the experimental data of ionization of Rydberg atoms as reported in Phys. Rev. A 71, 013416 (2005). The experiments showed a rapid increase in ionization above a specific Rydberg state. Our theory supports the same, and also indicates that this is due to the relation between scattering length and the radius of the orbit.

physics.atom-ph