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Pregled bibliografske jedinice broj: 17893

Nitrogen Laser Beam Interaction with Copper Surface


Henč-Bartolić, Višnja; Andreić, Željko; Stubičar, Mirko; Kunze, Hans-Joachim
Nitrogen Laser Beam Interaction with Copper Surface // Fizika A : a journal of experimental and theoretical physics : atomic and molecular physics, condensed matter physics, plasma physics, 7 (1998), 4; 105-112 (podatak o recenziji nije dostupan, članak, znanstveni)


CROSBI ID: 17893 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Nitrogen Laser Beam Interaction with Copper Surface

Autori
Henč-Bartolić, Višnja ; Andreić, Željko ; Stubičar, Mirko ; Kunze, Hans-Joachim

Izvornik
Fizika A : a journal of experimental and theoretical physics : atomic and molecular physics, condensed matter physics, plasma physics (1330-0008) 7 (1998), 4; 105-112

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
Laser-induced plasma; N2-laser radiation; short pulses; copper surface

Sažetak
The ultraviolet and visible spectra of plasmas produced by N2-laser radiation focused onto a copper target in air and in vacuum have been recorded photographically. The nitrogen laser beam ( wavelength 337 nm) had a maximum energy density of 1.1 J/cm2, the pulse duration was 6 ns, and the repetition rate 0.2 Hz. The measured electron temperature was 15000 K(+- 30%) in air and 13000 K (+- 50%) in vacuum and the electron densities were 6.5 x (10 exp 17) /cm3 (+-60%) and 3.0 x (10 exp 17)/cm3 (+- 60%), respectively. The irradiated surface in air and in vacuum was studied employing a metallographic microscope. In vacuum, the droplets were created and expulsed at the crater edges. Their formation is explained by the hydrodynamical model. They were formed in a time interval which is about two times shorter than the duration of the laser pulse. In air, droplets were also formed. The weight loss from the Cu-crater in vacuum was about 0.3x (10 exp -4) micromole/pulse, in air it was about three times less.

Izvorni jezik
Engleski

Znanstvena područja
Fizika, Kemija



POVEZANOST RADA


Projekti:
00980302
036009
119495

Ustanove:
Fakultet elektrotehnike i računarstva, Zagreb,
Institut "Ruđer Bošković", Zagreb,
Prirodoslovno-matematički fakultet, Zagreb


Citiraj ovu publikaciju:

Henč-Bartolić, Višnja; Andreić, Željko; Stubičar, Mirko; Kunze, Hans-Joachim
Nitrogen Laser Beam Interaction with Copper Surface // Fizika A : a journal of experimental and theoretical physics : atomic and molecular physics, condensed matter physics, plasma physics, 7 (1998), 4; 105-112 (podatak o recenziji nije dostupan, članak, znanstveni)
Henč-Bartolić, V., Andreić, Ž., Stubičar, M. & Kunze, H. (1998) Nitrogen Laser Beam Interaction with Copper Surface. Fizika A : a journal of experimental and theoretical physics : atomic and molecular physics, condensed matter physics, plasma physics, 7 (4), 105-112.
@article{article, author = {Hen\v{c}-Bartoli\'{c}, Vi\v{s}nja and Andrei\'{c}, \v{Z}eljko and Stubi\v{c}ar, Mirko and Kunze, Hans-Joachim}, year = {1998}, pages = {105-112}, keywords = {Laser-induced plasma, N2-laser radiation, short pulses, copper surface}, journal = {Fizika A : a journal of experimental and theoretical physics : atomic and molecular physics, condensed matter physics, plasma physics}, volume = {7}, number = {4}, issn = {1330-0008}, title = {Nitrogen Laser Beam Interaction with Copper Surface}, keyword = {Laser-induced plasma, N2-laser radiation, short pulses, copper surface} }
@article{article, author = {Hen\v{c}-Bartoli\'{c}, Vi\v{s}nja and Andrei\'{c}, \v{Z}eljko and Stubi\v{c}ar, Mirko and Kunze, Hans-Joachim}, year = {1998}, pages = {105-112}, keywords = {Laser-induced plasma, N2-laser radiation, short pulses, copper surface}, journal = {Fizika A : a journal of experimental and theoretical physics : atomic and molecular physics, condensed matter physics, plasma physics}, volume = {7}, number = {4}, issn = {1330-0008}, title = {Nitrogen Laser Beam Interaction with Copper Surface}, keyword = {Laser-induced plasma, N2-laser radiation, short pulses, copper surface} }

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