We present the results of a joint experimental and theoretical study of plasma expansion arising from Nd:YAG laser ablation (laser wavelength λ = 1.064 μm) of tin microdroplets in the context of extreme ultraviolet lithography. Measurements of the ion energy distribution reveal a near-plateau in the distribution for kinetic energies in the range 0.03-1 keV and a peak near 2 keV followed by a sharp fall-off in the distribution for energies above 2 keV. Charge-state resolved measurements attribute this peak to the existence of peaks centered near 2 keV in the Sn3+-Sn8+ ion energy distributions. To better understand the physical processes governing the shape of the ion energy distribution, we have modelled the laser-droplet interaction and sub...
The cavitation-driven expansion dynamics of liquid tin microdroplets set in motion by the ablative i...
The ablation of solid tin surfaces by a 800-nanometer-wavelength laser is studied for a pulse length...
We present a method to obtain the individual charge-state-dependent kinetic-energy distributions of ...
We present the results of a joint experimental and theoretical study of plasma expansion arising fro...
We present the results of a joint experimental and theoretical study of plasma expansion arising fro...
Laser produced Sn plasma, in its role as an efficient extreme ultraviolet (EUV) x-ray source, is bei...
The effect of a pair of picosecond pulses on the ionization and deformation of a liquid tin microdro...
We experimentally and numerically investigate the early-time hydrodynamic response of tin microdropl...
Ion energy distributions arising from laser-produced plasmas of Sn are measured over a wide laser pa...
Ion energy distributions arising from laser-produced plasmas of Sn are measured over a wide laser pa...
We present results from a combined experimental and numerical simulation study of the anisotropy of ...
The cavitation-driven expansion dynamics of liquid tin microdroplets set in motion by the ablative i...
The cavitation-driven expansion dynamics of liquid tin microdroplets set in motion by the ablative i...
The ablation of solid tin surfaces by a 800-nanometer-wavelength laser is studied for a pulse length...
We present a method to obtain the individual charge-state-dependent kinetic-energy distributions of ...
We present the results of a joint experimental and theoretical study of plasma expansion arising fro...
We present the results of a joint experimental and theoretical study of plasma expansion arising fro...
Laser produced Sn plasma, in its role as an efficient extreme ultraviolet (EUV) x-ray source, is bei...
The effect of a pair of picosecond pulses on the ionization and deformation of a liquid tin microdro...
We experimentally and numerically investigate the early-time hydrodynamic response of tin microdropl...
Ion energy distributions arising from laser-produced plasmas of Sn are measured over a wide laser pa...
Ion energy distributions arising from laser-produced plasmas of Sn are measured over a wide laser pa...
We present results from a combined experimental and numerical simulation study of the anisotropy of ...
The cavitation-driven expansion dynamics of liquid tin microdroplets set in motion by the ablative i...
The cavitation-driven expansion dynamics of liquid tin microdroplets set in motion by the ablative i...
The ablation of solid tin surfaces by a 800-nanometer-wavelength laser is studied for a pulse length...
We present a method to obtain the individual charge-state-dependent kinetic-energy distributions of ...