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Hasil Pencarian

Ditemukan 10 dokumen yang sesuai dengan query
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Manalu, Jojor Lamsihar
"Iradiasi laser Nd-YAG dengan energi 26 mJ dan lebar pulsa 8 ns difokuskan pads target zinc dilingkungan udara bertekanan 1 atm. Untuk mengetahui apakah laser plasma yang dihasilkan mengikuti mekanisme gas breakdown atau mengikuti mekanisme gelombang kejut, laju propagasi muka emisi plasma dan gelombang kejut diukur secara bersamaan. Dari hasil pengukuran terlihat jelas bahwa plasma laser yang dibangkitkan mengikuti model gelombang kejut sferis seperti yang telah diturunkan oleh Sedov. Pada proses awal dari iradiasi laser, muka emisi plasma akan berimpit dengan gelombang kejut, menandakan plasma ada dalam tahapan proses eksitasi. Pada tahap akhir dari iradiasi laser, muka gelombang kejut akan meninggalkan muka emisi plasma dan dalam kondisi ini plasma berada dalam tahapan pendinginan. Lebih lanjut ditunjukkan dengan menaikan densitas daya pada permukaan target, waktu pada tahapan eksitasi akan bertambah besar."
Depok: Fakultas Teknik Universitas Indonesia, 2000
T4660
UI - Tesis Membership  Universitas Indonesia Library
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Munawar Hadi Sya`roni
"Pengaruh tekanan udara dan iradiasi laser yang berulang-ulang ke permukaan target yang sama pada penguapan selektip di plasma gelombang kejut akan dipelajari. Plasma gelombang kejut didapat dengan memfokuskan laser Q-SW Nd-YAG (energy 26mJ; durasi pulsa 8 ns) pada permukaan target logam kuningan. Karakteristik evaporasi dari elemen Zn dan elemen Cu dipelajari dengan melihat dari karaktetistik emisinya. Telah ditemukan juga bahwa penguapan selektip pada elemen Cu senantiasa terjadi dan akan meningkat jika radiasi laser dilakukan secara terus menerus pada permukaan target yang sama. Dengan menaikkan tekanan udara disekeliling daerah interaksi efek penguapan selektip dapat ditekan. Hasil yang diperoleh pada pengukuran prod waktu dari intensitas emisi dan intensitas emisi terintegrasi ruang menunjukkan adanya daerah eksitasi gelombang kejut."
Depok: Fakultas Teknik Universitas Indonesia, 2000
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Syahrun Nur
"ABSTRAK
Plasma laser berkerapatan tinggi dibangkitkan dengan menggunakan laser TEA CO2 yang ditembakkan pada target lunak di lingkungan gas helium pada tekanan atmosferik. Mekanisme breakdown gas dipelajari dengan menggunakan spektrometri emisi atomik dan kajian ulang mengenai metode-metode peningkatan intesitas emisi spektrum dari beberapa penulis juga disajikan. Pada eksperimen ini diperlihatkan manfaat gas helium sebagai gas penyangga yang membantu mereduksi sinyal kontinu. Selain itu dikaji juga peranan sub target dalam pembangkitan plasma gelombang kejut, pada target lunak. Dapat ditunjukkan bahwa walaupun pada breakdown gas, plasma mengembang mengikuti mekanisme gelombang kejut. Aplikasi praktis untuk analisis emisi kuantitatif juga ditampilkan.
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1999
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Abdul Rahman
"Laser Nd-YAG dengan energi 26 mj dan 53 mj, lebar pulsa 8ns di/Okla/can ke target (Cu) pada tekanan udara yang dikurangi. Peningkatan rasio sinyal latar belakang (S/B) dimungkinkan dengan kombinasi unik dari plasma yang dibatasi (confined plasma) dan teknik pencitraan (imaging technique). Dengan menggunakan teknik pencitraan, plasma primer (primary plasma) dan bagian tertentu dari plasma sekunder (secondary plasma) memberikan spektrum emisi yang kontinu dipisahkan dari bagian lain plasma sekunder. Dengan metode ini dapat diperoleh spektrum S/B yang tinggi meskipun menggunakan pengukuran waktu terintegrasi (time-integrated). Untuk menkonfirmasikan peran dari mekanisme gelombang kejut (shock-wave) dalam pembentukan plasma, titik fokus radiasi laser dimajukan 3 mm pada permakaan target dan ditemukan bahwa plasma sekunder melengkung ke bagian belakang target pada posisi yang berhubungan dengan area yang ditutupi ketika dilihat dari sisi plasma primer. Fenomena sangat mendukung eksistensi gelombang kejut."
Depok: Fakultas Teknik Universitas Indonesia, 1999
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Winardi Tjahyo Baskoro
"Telah dilakukan pembangkitan plasma sekunder hasil interaksi antam laser Nd-YAG (2 mJ, 8 ns) pada moda Q-swicthed dengan target kuningan dan tembaga di udara tekanan rendah (-2 Tort). Karakterisasi plasma dilakukan dengan teknik distrilbusi ruang cacah-waktu dan seluruh-waktu. Hasilnya menunjukkan bahwa plasma gait-wider berbentuk hemispherik dengan diameter 8' mm, dan crater yang terjadi pada target memiliki diameter sekitar 20 mm. Efek penguapan selektif dapat ditekan dengan menurunkan energi laser dari 80 mJ ke 2 mJ. Pengukuran temperatur sebagai fungsi tekanan gas penyangga menunjukkan bahwa temperatur plasma tetap tinggi berkisar 6500 K Juga didapatkan kenyataan bahwa intensitas emisi backgroundnya sangat rendah, dan perbandingan sinyal ke background (SIB) cukup tinggi yaitu 8000 kali. Adapun plasma sekunder yang terjadi dibangkitkan oleh mekanisme gelombang kejut dan mekanisme eksitasi tumbukan sangat cepat antra atom-atom chili target dengan molekul-molekul gas penyangga."
Depok: Fakultas Teknik Universitas Indonesia, 1998
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Rinda
"A TEA CO2 laser pulse (50 mJ, 100 ns) was focused under reduced pressure on the silicone grease painted on copper plate as a sub-target with a power density of 6 GW/cm2. The comparison was made on the characteristics of the induced laser plasma between the two cases, with sub-target and without sub-target. It is proved that emission spectrum assigned to silicone atom can be detected only for the case with sub-target. It is also proved that in the absence of the sub-target, the gushing speed of the atoms is very low, while for the case with sub-target, the gushing speed of atoms becomes very fast. It is shown that the setting of sub-target is very effective to make laser-induced shock-wave plasma and it is very effective to realize quantitative analysis of soft material."
Depok: Program Pascasarjana Universitas Indonesia, 1998
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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M. Yunil
"ABSTRACT
A vacuum chamber has been designed and constructed for the observation the primary plasma and secondary plasma which is generated by the bombardments of brass by N2 Laser beam with about 5 ns pulse width and 1 1W power.
The Radius and spectral emission of the resulting secondary plasma of the brass sample at the surrounding gas pressure range 2 and 8 torr in N2, is presented.
This study can be developed to generated plasma and it can used for the analysis the composition the sample irradiated by N2 laser beam."
1988
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Kurnia Lahna
"A special interferometric technique with high sensitivity has been devised on the basis of rainbows refractometer without the use of an additional and delicate amplitude-splitting setup. This new technique was use for the characterization of shock wave plasma induced by a Q-sw Nd-YAG laser on various kinds of metal samples under reduced gas pressures. An unmistakable signal of density jump was detected simultaneously with the emission front signal. It is proved that at the initial stage of the secondary plasma expansion, the front of the emission and the front of the blast wave was coincide and move together with time. However, at a later stage, the front of the emission will separate from that of the blast wave induced in the surrounding gas at low pressures. Using Cu and Zn samples, the experimental result showed that the separation of the emission front and blast wave front took place at 4 mm above sample surface for the laser energy of 140 mJ."
2000
T4004
UI - Tesis Membership  Universitas Indonesia Library
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Wahyu Setia Budi
"The role of shock wave in the generation of laser induced secondary plasma was first suggested by Kagawa et al. from an experimental result employing N2 laser on metal targets at reduced surrounding air pressure. This so-called shock wave induced plasma model has since been reexamined and confirmed in a series of experiments performed by Kurniawan and Kagawa et al. using TEA (Transversely Excited Atmospheric) CO2 laser and XeCI excimer laser. All of these experiments were performed at reduced gas pressures. The most important characteristics revealed by those experiments consist of the typical hemispherical shape of the plasma with a thin emission shell at the plasma front, which moves with a propagation length proportional to t°-4, in excellent agreement with the shock wave characteristics predicted theoretically by Sedov. It was further demonstrated that ionic emission was generally insignificant compared to neutral atom emission. While those results have provided relatively solid and comprehensive supports for the model, additional evidence on the density jump characteristic of shock wave generation and other on some unique aspect concerning interaction of shock wave with an object will still be desirable for further clarification on the role of the model.
A series of experiment have been carried out on the dynamical process taking place in the secondary plasma induced by normal oscillation and Q-switched Nd-YAG (yttrium aluminum garnet) laser on brass, copper and zinc targets at reduced air pressures. Accurate dynamical characterization of the cross-sectional view of the plasma expansion has been made possible by the unique confinement technique using two parallel glass plates. In order to detect the shock front and the emission front simultaneously, a new shadowgraph technique involving a He-Ne laser as a light probe was also developed. Furthermore in an experiment intended for giving support to the shock wave excitation model qualitatively, the plasma was forced to collide with a wedge placed in front of the target in order to examine the reflection and diffraction phenomena. Measurements were also performed on the time-profile of the plasma emission to provide a description of the plasma temperature variation with time. The study was further substantiated by measurement of the time-resolved spatial distributions of emission intensities.
The results showed that the plasma was generated through the shock-wave and the dynamical process of the secondary plasma is divided into two stages, namely, the "shock excitation stage" and the "cooling stage". During the shock excitation stage, the atoms gushing out from the target were adiabatically compressed against the surrounding gas, resulting in a rapid rise of the plasma temperature up to around 9,000 K. For the case of 2 Ton gas pressure, with the laser pulse of 86 m7 targeted on copper sample, the shock excitation stage lasted for about 1 µs, which was followed immediately by the cooling stage and the plasma temperature decreases gradually to around 7,500 K in about 3 .is. The excitation stage and the cooling stage periods became longer with increasing laser pulse energy.
The multiple excitation processes associated with the secondary plasma emission, and generated by successive multiple shock wave, was clearly observed when the normal oscillation laser was focused onto the surface of the target. The emission characteristics of this secondary plasma showed an extremely low ion and background emissions. This condition is suitable for highly sensitive spectrochemical analysis, as the temperature of the plasma is still high enough (around 7,000 K) for the excitation of neutral atoms. Another favorable conditions is the large amount of material ejected in the process (amounting to 10 µg), which permits an average analysis.
For a practical consideration, the condition to increase sensitivity by suppressing the background was also studied. The result showed that the sensitivity of laser induced shock wave plasma spectroscopy could be increased by reducing laser pulse energy, in which the less expensive time-integrated detection method can be applied. On the other hand, when the sample requires a high power laser beam, the sensitivity could also be enhanced with the aid of a time-gated DMA (Optical Multi channel Analyzer) system by cutting-off the ionic emission coming from the shock excitation stage."
Depok: Fakultas Teknik Universitas Indonesia, 1999
D84
UI - Disertasi Membership  Universitas Indonesia Library
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New York: John Wiley & Sons, 1976
530.44 PRI
Buku Teks  Universitas Indonesia Library