New stable multiply charged negative atomic ions in linearly polarized superintense laser fields.
نویسندگان
چکیده
Singly charged negative atomic ions exist in the gas phase and are of fundamental importance in atomic and molecular physics. However, theoretical calculations and experimental results clearly exclude the existence of any stable doubly-negatively-charged atomic ion in the gas phase, only one electron can be added to a free atom in the gas phase. In this report, using the high-frequency Floquet theory, we predict that in a linear superintense laser field one can stabilize multiply charged negative atomic ions in the gas phase. We present self-consistent field calculations for the linear superintense laser fields needed to bind extra one and two electrons to form He-, He2-, and Li2-, with detachment energies dependent on the laser intensity and maximal values of 1.2, 0.12, and 0.13 eV, respectively. The fields and frequencies needed for binding extra electrons are within experimental reach. This method of stabilization is general and can be used to predict stability of larger multiply charged negative atomic ions.
منابع مشابه
Dimensional scaling treatment of stability of atomic anions induced by superintense, high-frequency laser fields.
We show that dimensional scaling, combined with the high-frequency Floquet theory, provides useful means to evaluate the stability of gas phase atomic anions in a superintense laser field. At the large-dimension limit (D-->infinity), in a suitably scaled space, electrons become localized along the polarization direction of the laser field. We find that calculations at large D are much simpler t...
متن کاملMultiple recapture of electrons in multiple ionization of the argon dimer by a strong laser field.
We observe multiply frustrated tunneling ionization-induced dissociation of the argon dimers by intense linearly polarized ultrashort laser pulses. By measuring the kinetic energy release and angular distribution of the Coulomb explosion of up to eightfold ionized argon dimers, we can trace the recapture of up to two electrons to Rydberg states of the highly charged compound at the end of the l...
متن کاملDimensional scaling treatment with relativistic corrections for stable multiply charged atomic ions in high-frequency super-intense laser fields.
We present a theoretical framework which describes multiply charged atomic ions, their stability within super-intense laser fields, and also lay corrections to the systems due to relativistic effects. Dimensional scaling calculations with relativistic corrections for systems: H, H(-), H(2 -), He, He(-), He(2 -), He(3 -) within super-intense laser fields were completed. Also completed were three...
متن کاملun 2 00 3 Electron rescattering and the fragmentation dynamics of molecules in strong optical fields
We have probed the fragmentation dynamics in a bent triatomic molecule, water , a non-planar molecule, methanol, and a planar ring-structured molecule, benzene, using 100 fs duration pulses of linearly and circularly polarized, in-frared, intensity-selected laser light. At laser intensities larger than 10 15 W cm −2 , the yield of singly and multiply charged atomic fragments from these molecule...
متن کاملRecoil - ion momentum spectroscopy of multiply charged argon ions produced by intense ( 1016 W cm 2 ) laser light
Multiple ionization processes of argon atoms by a linearly polarized laser light with the maximum peak intensity of about 5 · 10 W cm 2 were investigated by the recoil-ion momentum spectroscopy. Momentum distributions of argon ions with charge states 3+ and 4+ were measured. The experimental results were compared with calculations based on the sequential ionization model and the ADK ionization ...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The Journal of chemical physics
دوره 124 20 شماره
صفحات -
تاریخ انتشار 2006