Prompt electron emission and collisional ionization of ambient gas during pulsed laser ablation of silver


Autoria(s): Issac, R C; Varier, G K; Gopinath, P; Harilal, S S; Nampoori, V P N; Vallabhan, C P G
Data(s)

27/10/2011

27/10/2011

1998

Resumo

A silver target kept under partial vacuum conditions was irradiated with focused nanosecond pulses at 1:06 mm from a Nd:YAG laser. The electron emission monitored with a Langmuir probe shows a clear twin-peak distribution. The first peak which is very sharp has only a small delay and it indicates prompt electron emission with energy as much as 60 5 eV. Also the prompt electron emission shows a temporal profile with a width that is same as that for the laser pulse whereas the second peak is broader, covers several microseconds, and represents the low-energy electrons (2 0:5 eV) associated with the laser-induced silver plasma as revealed by time-of-flight measurements. It has been found that prompt electrons ejected from the target collisionally excite and ionize ambient gas molecules. Clearly resolved rotational structure is observed in the emission spectra of ambient nitrogen molecules. Combined with time-resolved spectroscopy, the prompt electrons can be used as excitation sources for various collisional excitation–relaxation experiments. The electron density corresponding to the first peak is estimated to be of the order of 1017 cm?--3 and it is found that the density increases as a function of distance away from the target. Dependence of probe current on laser intensity shows plasma shielding at high laser intensities.

Cochin University of Science & Technology

Identificador

Appl. Phys. A 67, 557–561 (1998)

http://dyuthi.cusat.ac.in/purl/2389

http://dx.doi.org/10.1007/s003390050821

Idioma(s)

en

Publicador

Springer Berlin / Heidelberg

Palavras-Chave #Physics #Astronomy
Tipo

Working Paper