Electron impact ionization of atomic clusters in ultraintense laser fields

نویسندگان

  • A. Heidenreich
  • J. Jortner
چکیده

In this paper we report on inner ionization of Xen clusters (n = 55−2171) in ultraintense Gaussian laser fields (peak intensity I = 1015−1020 Wcm−2, pulse width τ = 25 fs, frequency 0.35 fs−1). The cluster inner ionization process is induced by the barrier suppression ionization (BSI) mechanism and by electron impact ionization (EII), which occurs sequentially with the BSI. We address electron impact ionization of clusters, which pertains to inelastic reactive processes of the high-energy (100 eV–1 keV per electron) nanoplasma. We utilized experimental data for the energy dependence of the electron impact ionization cross-sections of Xe (j = 1−10) ions, which were fit by an empirical three-parameter Lotz-type equation, to explore EII in clusters by molecular dynamics simulations. Information was obtained on the yields and time-resolved dynamics of the EII levels (i.e., number nimp of electrons per cluster atom) in the Xen clusters and their dependence on the laser intensity and cluster size. The relative long-time (t = 90 fs) yields for EII, nimp/nii (where nii is the total inner ionization yield) are rather low and increase with decreasing the laser intensity. In the intensity range I = 1015−1016 Wcm−2, nimp/nii = 0.21 for n = 2171 and nimp/nii = 0.09−0.14 for n = 459, while for I = 1018−1020 Wcm−2, nimp/nii = 0.01−0.05. The difference ∆nimp between the EII yield at long time and at the termination of the laser pulse reflects on ionization dynamics by the nanoplasma when the laser pulse is switched off. For Xe2171 in the lower intensity domain, ∆nimp = 0.9 at I = 10 15 Wcm−2 and ∆nimp = 0.4 at 10 Wcm−2, reflecting on EII by the persistent nanoplasma under “laser free” conditions, while in the higher intensity domain of I = 1017−1018 Wcm−2, ∆nimp is negligibly small due to the depletion of the transient nanoplasma. PACS. 34.80.Gs Molecular excitation and ionization by electron impact – 36.40.Qv Stability and fragmentation of clusters – 36.40.Wa Charged clusters

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Extreme dynamics and energetics of Coulomb explosion of Xe clusters.

Unique features of Coulomb explosion (CE) of many-electron elemental Xe(n) (n = 13-2171) clusters driven by ultraintense and ultrashort near-infrared laser pulses (peak intensities 10(15)-10(20) W cm(-2) and pulse lengths of 10-100 fs) manifest ion dynamics and energetics in the extreme, with ultrafast (5-15 A fs(-1)) velocities and ultrahigh (keV-1 MeV) energies. Relations were established bet...

متن کامل

Cluster dynamics transcending chemical dynamics toward nuclear fusion.

Ultrafast cluster dynamics encompasses femtosecond nuclear dynamics, attosecond electron dynamics, and electron-nuclear dynamics in ultraintense laser fields (peak intensities 10(15)-10(20) W.cm(-2)). Extreme cluster multielectron ionization produces highly charged cluster ions, e.g., (C(4+)(D(+))(4))(n) and (D(+)I(22+))(n) at I(M) = 10(18) W.cm(-2), that undergo Coulomb explosion (CE) with the...

متن کامل

A practical theoretical formalism for atomic multielectron processes: direct multiple ionization by a single auger decay or by impact of a single electron or photon

Multiple electron processes occur widely in atoms, molecules, clusters, and condensed matters when they are interacting with energetic particles or intense laser fields. Direct multielectron processes (DMEP) are the most complicated among the general multiple electron processes and are the most difficult to describe theoretically. In this work, a unified and accurate theoretical formalism is pr...

متن کامل

Study of laser ablation using nano-second laser pulses

 In this paper, the laser ablation process based on the irradiation of nanosecond pulsed lasers on a copper target surface in the presence of Helium gas is studied. The dynamical behaviors of the generated plasma in the helium gas and evaporated copper at the atmospheric pressure are examined using a laser pulse, laser wavelength of and intensity of 7×1010W/cm2. A one-dimensional thermal model ...

متن کامل

Theory of Gas Ionization by Intense Electromagnetic Fields

The distribution function of the electrons produced in the interaction between an intense electromagnetic wave and a neutral gas is derived and is shown to be nonequilibrium and anisotropic. By assuming that the time scale of gas ionization is much greater than the field period, it is shown that the electron distribution function formed in microwave and optical discharges has sharp anisotropy a...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره   شماره 

صفحات  -

تاریخ انتشار 2005